0000000000124179

AUTHOR

Fernando Aniento

0000-0003-3553-585x

showing 35 related works from this author

In vivo Trafficking and Localization of p24 Proteins in Plant Cells

2008

p24 proteins constitute a family of putative cargo receptors that traffic in the early secretory pathway. p24 proteins can be divided into four subfamilies (p23, p24, p25 and p26) by sequence homology. In contrast to mammals and yeast, most plant p24 proteins contain in their cytosolic C-terminus both a dilysine motif in the -3, -4 position and a diaromatic motif in the -7, -8 position. We have previously shown that the cytosolic tail of Arabidopsis p24 proteins has the ability to interact with ARF1 and coatomer (through the dilysine motif) and with COPII subunits (through the diaromatic motif). Here, we establish the localization and trafficking properties of an Arabidopsis thaliana p24 pr…

Recombinant Fusion ProteinsMolecular Sequence DataArabidopsisGolgi ApparatusVacuoleProtein Sorting SignalsBiologyEndoplasmic ReticulumBiochemistrysymbols.namesakeStructural BiologyArabidopsisGeneticsAnimalsHumansProtein IsoformsAmino Acid SequenceMolecular BiologyCOPIISecretory pathwayArabidopsis ProteinsLysineEndoplasmic reticulumMembrane ProteinsCell BiologyCOPIGolgi apparatusbiology.organism_classificationActinsCell biologyDNA-Binding ProteinsProtein TransportBiochemistryCoatomerVacuolessymbolsCOP-Coated VesiclesCarrier ProteinsTranscription FactorsTraffic
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Acidic cytosolic proteins are preferentially imported into rat liver lysosomes.

1998

Previous studies have reported that lysosomes isolated from human diploid fibroblasts and from rat liver can selectively import and degrade specific proteins. We have now reinvestigated this selectivity using an in vitro assay with rat liver lysosomes and an extract of cytosolic proteins prepared from cultured cells labeled to equilibriums with [35S-]methionine. Analysis by two-dimensional gel electrophoresis and autoradiography of the cytosolic proteins bound to the lysosomal membrane and imported into the lysosomes shows that when all cytosolic proteins are simultaneously present in the in vitro assay the lysosomal uptake also occurs in a specific manner. These findings suggest that isola…

Clinical BiochemistryProtein degradationBiologyBiochemistryAnalytical ChemistryCell Linechemistry.chemical_compoundCytosolIn vivoCricetinaePiAnimalsGel electrophoresisMethionineProteinsBiological TransportIn vitroCell biologyRatsCytosolIsoelectric pointchemistryBiochemistryLiverLysosomesAcidsElectrophoresis
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Loss of Arabidopsis p24 function affects ERD2 traffic and Golgi structure and activates the unfolded protein response

2017

The p24 family of proteins (also known as the TMED family) are key regulators of protein trafficking along the secretory pathway, but very little is known about their functions in plants. A quadruple loss-of-function mutant affecting the p24 genes from the δ-1 subclass of the p24δ subfamily (p24δ3δ4δ5δ6) showed alterations in the Golgi, suggesting that these p24 proteins play a role in the organization of the compartments of the early secretory pathway in Arabidopsis Loss of p24δ-1 proteins also induced the accumulation of the K/HDEL receptor ERD2a (ER lumen protein-retaining receptor A) at the Golgi and increased secretion of BiP family proteins, ER chaperones containing an HDEL signal, pr…

0106 biological sciences0301 basic medicineEndoplasmic reticulumMutantCell BiologyBiologyGolgi apparatusbiology.organism_classification01 natural sciencesCell biology03 medical and health sciencessymbols.namesake030104 developmental biologyBiochemistryArabidopsissymbolsUnfolded protein responseSecretionCOPIISecretory pathway010606 plant biology & botanyJournal of Cell Science
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alpha 2-COP is involved in early secretory traffic in Arabidopsis and is required for plant growth

2017

[EN] COP (coat protein) I-coated vesicles mediate intra-Golgi transport and retrograde transport from the Golgi to the endoplasmic reticulum. These vesicles form through the action of the small GTPase ADP-ribosylation factor 1 (ARF1) and the COPI heptameric protein complex (coatomer), which consists of seven subunits (alpha-, beta-, beta' -, gamma-, delta-, epsilon- and xi-COP). In contrast to mammals and yeast, several isoforms for coatomer subunits, with the exception of gamma and delta, have been identified in Arabidopsis. To understand the role of COPI proteins in plant biology, we have identified and characterized a loss-of-function mutant of alpha 2-COP, an Arabidopsis alpha-COP isofo…

0301 basic medicineα2-COPPhysiologyUbiquitin-Protein LigasesProtein subunitMutantSEC31ArabidopsisPlant ScienceEndoplasmic ReticulumCoatomer ProteinP24 family protein03 medical and health sciencessymbols.namesakeBotanyBIOQUIMICA Y BIOLOGIA MOLECULARCOPIICOPIISecretory pathwayCOPICoat proteinArabidopsis ProteinsChemistryEndoplasmic reticulumAlpha 2-COPBiological TransportCOPIGolgi apparatusSEC31.Cell biologyAlpha 1-COPα1-COP030104 developmental biologyCoatomerGolgi apparatussymbolsCOPII Golgi apparatusResearch Paper
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Sorting signals in the cytosolic tail of plant p24 proteins involved in the interaction with the COPII coat.

2004

The ability of the cytosolic tail of a plant p24 protein to bind COPI and COPII subunits from plant and animal sources in vitro has been examined. We have found that a dihydrophobic motif in the -7,-8 position (relative to the cytosolic carboxy-terminus), which strongly cooperates with a dilysine motif in the -3,-4 position for COPI binding, is required for COPII binding. In addition, we show that COPI and COPII coat proteins from plant cytosol compete for binding to the sorting motifs in these tails. Only in the absence of the dilysine motif in the -3,-4 position or after COPI depletion could we observe COPII binding to the p24 tail. This competition is not observed when using rat liver cy…

CoatPhysiologyAmino Acid MotifsArabidopsisReceptors Cytoplasmic and NuclearPlant ScienceBiologyCoat Protein Complex ICytosolAnimalsCOPIIBinding SitesVesicular-tubular clusterArabidopsis ProteinsCell BiologyGeneral MedicineCOPIPlant cellIn vitroPeptide FragmentsCell biologyRatsCytosolProtein TransportRat liverCOP-Coated VesiclesProtein BindingSignal TransductionPlantcell physiology
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Characterization of Cop I Coat Proteins in Plant Cells

2000

Membrane traffic in eukaryotic cells is mediated by COP (coat protein)-coated vesicles. Their existence in plant cells has not yet been unequivocally demonstrated, although coated vesicles (probably with a COP coat) can be seen by electron microscopy. At the gene level, plant cells seem to contain all the components necessary to form COP-coated vesicles. In this paper, we have used antibodies raised against mammalian COPI coat proteins to detect putative homologues in rice (Oryza sativa) cells. Using these antibodies, we have found that rice cells contain alpha-, beta-, beta'-, and gamma-COP, as well as ADP-ribosylation factor (ARF) 1 protein. In addition, we show that antibodies against ma…

ImmunoprecipitationBlotting WesternBiophysicsCoated vesicleCross ReactionsBiologyCoatomer ProteinBiochemistryAntibodiesCytosolMicrosomesAnimalsMolecular BiologyVesiclefood and beveragesBiological TransportNeomycinOryzaCell BiologyCOPIPlant cellPrecipitin TestshumanitiesRatsCell biologyMolecular WeightCytosolLiverBiochemistryCoatomerbiology.proteinADP-Ribosylation Factor 1Guanosine TriphosphateAntibodyProtein BindingBiochemical and Biophysical Research Communications
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ABP1 Mediates Auxin Inhibition of Clathrin-Dependent Endocytosis in Arabidopsis

2010

SummarySpatial distribution of the plant hormone auxin regulates multiple aspects of plant development. These self-regulating auxin gradients are established by the action of PIN auxin transporters, whose activity is regulated by their constitutive cycling between the plasma membrane and endosomes. Here, we show that auxin signaling by the auxin receptor AUXIN-BINDING PROTEIN 1 (ABP1) inhibits the clathrin-mediated internalization of PIN proteins. ABP1 acts as a positive factor in clathrin recruitment to the plasma membrane, thereby promoting endocytosis. Auxin binding to ABP1 interferes with this action and leads to the inhibition of clathrin-mediated endocytosis. Our study demonstrates th…

0106 biological sciencesEndosomemedia_common.quotation_subjectArabidopsisReceptors Cell SurfaceEndocytosis01 natural sciencesClathrinGeneral Biochemistry Genetics and Molecular BiologyArticle03 medical and health sciencesAuxinheterocyclic compoundsPIN proteinsInternalization030304 developmental biologymedia_commonPlant Proteinschemistry.chemical_classificationAuxin binding0303 health sciencesbiologyIndoleacetic AcidsBiochemistry Genetics and Molecular Biology(all)Arabidopsis ProteinsCell MembranefungiMembrane Transport Proteinsfood and beveragesReceptor-mediated endocytosisClathrinEndocytosisCell biologychemistrybiology.protein010606 plant biology & botanyCell
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Sorting signals for PIN1 trafficking and localization

2016

PIN-FORMED (PIN) family proteins direct polar auxin transport based on their asymmetric (polar) localization at the plasma membrane. In the case of PIN1, it mainly localizes to the basal (rootward) plasma membrane domain of stele cells in root meristems. Vesicular trafficking events, such as clathrin-dependent PIN1 endocytosis and polar recycling, are probably the main determinants for PIN1 polar localization. However, very little is known about the signals which may be involved in binding the μ-adaptin subunit of clathrin adaptor complexes (APs) for sorting of PIN1 within clathrin-coated vesicles, which can determine its trafficking and localization. We have performed a systematic mutagene…

0301 basic medicineArabidopsis ProteinsVesicleClathrin adaptor complexCell MembraneMembrane Transport ProteinsPlant ScienceBiologyEndocytosisClathrinEndocytosisAdaptor Protein Complex mu SubunitsArticle AddendumCell biologyAdaptor Proteins Vesicular Transport03 medical and health sciences030104 developmental biologybiology.proteinClathrin adaptor proteinsPolar auxin transportTyrosineSecretory pathwayPlant Signaling & Behavior
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p24 Family Proteins Are Involved in Transport to the Plasma Membrane of GPI-Anchored Proteins in Plants

2020

p24 proteins are a family of type-I membrane proteins that cycle between the endoplasmic reticulum (ER) and the Golgi apparatus via Coat Protein I (COPI)- and COPII-coated vesicles. These proteins have been proposed to function as cargo receptors, but the identity of putative cargos in plants is still elusive. We previously generated an Arabidopsis (Arabidopsis thaliana) quadruple loss-of-function mutant affecting p24 genes from the δ-1 subclass of the p24 delta subfamily (p24δ3δ4δ5δ6 mutant). This mutant also had reduced protein levels of other p24 family proteins and was found to be sensitive to salt stress. Here, we used this mutant to test the possible involvement of p24 proteins in the…

0106 biological sciencesGenotypePhysiologyGlycosylphosphatidylinositolsMutantArabidopsisGolgi ApparatusPlant ScienceEndoplasmic Reticulum01 natural sciencessymbols.namesakeArabidopsisGeneticsArabidopsis thalianaResearch ArticlesbiologyChemistryArabidopsis ProteinsVesicleEndoplasmic reticulumCell MembraneGenetic VariationMembrane ProteinsCOPIGolgi apparatusbiology.organism_classificationCell biologyProtein TransportMembrane proteinMutationsymbols010606 plant biology & botany
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Uptake of an Endocytic Marker by Rice Cells: Variations Related to Osmotic and Saline Stress

2003

Saline and osmotic stress are the main abiotic factors limiting the productivity of rice and other crop plants. Although both coincide in generating water deficit and affect many aspects of plant growth and development similarly, some effects of salinity are distinctively related to the ionic component of salt stress. At the cellular level, dessication tolerance is largely dependent on the cell's ability for osmotic adjustment. Here, we have studied the effects of saline and osmotic stress on endocytosis by rice cells, to investigate the common and distinctive effects of saline-generated stress and osmotically generated stress, and the possible involvement of endocytosis in tolerance mechan…

Osmotic shockPhysiologymedicine.medical_treatmentEndocytic cycleCellPlant ScienceSodium ChlorideBiologyEndocytosisBotanymedicineBiotinylationSalineOsmolar ConcentrationBiological TransportOryzaSerum Albumin BovineCell BiologyGeneral MedicinePlant cellEndocytosisSalinityProtein Transportmedicine.anatomical_structureCell cultureBiophysicsBiomarkersCell DivisionPlant and Cell Physiology
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Membrane transport in the endocytic pathway: Animal versus plant cells

2000

The endocytic pathway is a well established process in animal cells, but it is not well understood in plant cells. At the morphological level, all the compartments involved in endocytosis in animal cells seem to have counterparts in plant cells, and the organization of the pathway appears to share some striking similarities. Several Rab homologues have been found in plant cells, including homologues of Rab5, Rab7, and Rab11, markers of endocytic compartments in animal cells. Coat proteins are also present in plant cells, including clathrin, adaptins, and ADP ribosylation factor proteins. However, endocytic compartments in plant cells also exhibit specific features both in organization and f…

biologyADP ribosylation factorfungiEndocytic cyclefood and beveragesCell BiologyPlant ScienceGeneral MedicineMembrane transportPlant cellEndocytosisClathrinCell biologyBiochemistrybiology.proteinRabFunction (biology)Protoplasma
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AtPGAP1 functions as a GPI inositol-deacylase required for efficient transport of GPI-anchored proteins

2021

Abstract Glycosylphosphatidylinositol (GPI)-anchored proteins (GPI-APs) play an important role in a variety of plant biological processes including growth, stress response, morphogenesis, signaling, and cell wall biosynthesis. The GPI anchor contains a lipid-linked glycan backbone that is synthesized in the endoplasmic reticulum (ER) where it is subsequently transferred to the C-terminus of proteins containing a GPI signal peptide by a GPI transamidase. Once the GPI anchor is attached to the protein, the glycan and lipid moieties are remodeled. In mammals and yeast, this remodeling is required for GPI-APs to be included in Coat Protein II-coated vesicles for their ER export and subsequent t…

Signal peptideGlycanGenotypePhysiologyGlycosylphosphatidylinositolsPlant ScienceGenes Plantchemistry.chemical_compoundGene Expression Regulation PlantArabidopsisGeneticsArabidopsis thalianaInositolbiologyChemistryArabidopsis ProteinsEndoplasmic reticulumGenetic VariationMembrane Proteinsbiology.organism_classificationYeastPhosphoric Monoester HydrolasesCell biologyFocus Issue on Transport and Signalingcarbohydrates (lipids)Protein Transportbiology.proteinlipids (amino acids peptides and proteins)Function (biology)
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Subcellular fractionation of tissue culture cells.

2003

Cell fractionation techniques include some of the most important and widely used analytical tools in cell and molecular biology, and are essential for the development of cell-free assays that reconstitute complicated cellular processes. In addition to simple gradient systems, this unit discusses the immuno-purification of organelles, in particular endosomes. As antigens, purification can be achieved using endogenous or ectopically expressed proteins, provided that appropriate antibodies are available. Alternatively, tagged proteins can be used, when combined with anti-tag antibodies. Now that sequencing of the genomes of several organisms has been completed, biochemical strategies, and in p…

EndosomeImmunologyCellular functionsFractionationEndosomesBiologyCell FractionationBiochemistryGenomeCell LineTissue Culture TechniquesTissue cultureAntigenStructural BiologyCricetinaeOrganelleBiochemical reactionsAnimalsHumansCell MembraneProteinsBiological TransportGeneral MedicineMembrane transportIn vitroCell biologyCell fractionationSubcellular FractionsCurrent protocols in immunology
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Retention mechanisms for ER and Golgi membrane proteins

2014

Unless there are mechanisms to selectively retain membrane proteins in the endoplasmic reticulum (ER) or in the Golgi apparatus, they automatically proceed downstream to the plasma or vacuole membranes. Two types of coat protein complex I (COPI)-interacting motifs in the cytosolic tails of membrane proteins seem to facilitate membrane retention in the early secretory pathway of plants: a dilysine (KKXX) motif (which is typical of p24 proteins) for the ER and a KXE/D motif (which occurs in the Arabidopsis endomembrane protein EMP12) for the Golgi apparatus. The KXE/D motif is highly conserved in all eukaryotic EMPs and is additionally present in hundreds of other proteins of unknown subcellu…

Golgi membraneSecretory PathwayKKXXMolecular Sequence DataGolgi ApparatusMembrane ProteinsGolgi TargetingPlant ScienceCOPIGolgi apparatusBiologyEndoplasmic ReticulumCoat Protein Complex ICell biologysymbols.namesakeMembrane proteinPlant CellssymbolsAmino Acid SequenceIntegral membrane proteinSecretory pathwayTrends in Plant Science
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Molecular mechanisms of endomembrane trafficking in plants

2021

Abstract Endomembrane trafficking is essential for all eukaryotic cells. The best-characterized membrane trafficking organelles include the endoplasmic reticulum (ER), Golgi apparatus, early and recycling endosomes, multivesicular body, or late endosome, lysosome/vacuole, and plasma membrane. Although historically plants have given rise to cell biology, our understanding of membrane trafficking has mainly been shaped by the much more studied mammalian and yeast models. Whereas organelles and major protein families that regulate endomembrane trafficking are largely conserved across all eukaryotes, exciting variations are emerging from advances in plant cell biology research. In this review, …

AcademicSubjects/SCI01280EndosomeENDOPLASMIC-RETICULUMGolgi ApparatusPlant ScienceSUSPENSION-CULTURED CELLSBiologyDOMAIN-CONTAINING PROTEINSEndoplasmic ReticulumEndocytosissymbols.namesakeLysosomeAutophagymedicineEndomembrane systemVACUOLAR TRAFFICKINGPlant Physiological PhenomenaLate endosomeAcademicSubjects/SCI01270AcademicSubjects/SCI02288AcademicSubjects/SCI02287Endoplasmic reticulumAcademicSubjects/SCI02286AutophagyBiology and Life SciencesBiological TransportRETICULUM EXPORT SITESCell BiologyGolgi apparatusCLATHRIN-MEDIATED ENDOCYTOSISEndocytosisFocus on Cell BiologyCell biologyTRANS-GOLGI NETWORKEditorialmedicine.anatomical_structureP24 FAMILY PROTEINSMEMBRANE TRAFFICKINGPLASMA-MEMBRANEVacuolessymbolsThe Plant Cell
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Arabidopsis p24δ5 and p24δ9 facilitate Coat Protein I-dependent transport of the K/HDEL receptor ERD2 from the Golgi to the endoplasmic reticulum.

2014

The p24 proteins belong to a family of type I membrane proteins which cycle between the endoplasmic reticulum (ER) and Golgi via coat protein I (COPI) and COPII vesicles. Current nomenclature classifies them into four subfamilies, although plant p24 proteins belong to either the p24β or the p24δ subfamilies. Here, we show that Arabidopsis p24δ5/δ9 and HDEL ligands shift the steady-state distribution of the K/HDEL receptor ERD2 from the Golgi to the ER. We also show that p24δ5/δ9 interact directly with ERD2. This interaction requires the Golgi dynamics (GOLD) domain in p24δ5 and is much higher at acidic than at neutral pH, consistent with both proteins interacting at the cis-Golgi. In additi…

Receptors PeptideArabidopsisGolgi ApparatusPlant ScienceBiologyEndoplasmic ReticulumCoat Protein Complex Isymbols.namesakeGeneticsAnimalsSecretionCOPIIVesicular-tubular clusterArabidopsis ProteinsEndoplasmic reticulumMembrane ProteinsCell BiologyCOPIGolgi apparatusCell biologyTransport proteinDNA-Binding ProteinsProtein TransportMembrane proteinsymbolsTranscription FactorsThe Plant journal : for cell and molecular biology
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Sorting Motifs Involved in the Trafficking and Localization of the PIN1 Auxin Efflux Carrier

2016

In contrast with the wealth of recent reports about the function of μ-adaptins and clathrin adaptor protein (AP) complexes, there is very little information about the motifs that determine the sorting of membrane proteins within clathrin-coated vesicles in plants. Here, we investigated putative sorting signals in the large cytosolic loop of the Arabidopsis (Arabidopsis thaliana) PIN-FORMED1 (PIN1) auxin transporter, which are involved in binding μ-adaptins and thus in PIN1 trafficking and localization. We found that Phe-165 and Tyr-280, Tyr-328, and Tyr-394 are involved in the binding of different μ-adaptins in vitro. However, only Phe-165, which binds μA(μ2)- and μD(μ3)-adaptin, was found …

0106 biological sciences0301 basic medicinePhysiologyPhenylalanineGreen Fluorescent ProteinsMutantArabidopsisPlant ScienceProtein Sorting SignalsEndoplasmic ReticulumEndocytosis01 natural sciencesClathrin03 medical and health sciencesCytosolGeneticsGuanine Nucleotide Exchange FactorsSecretory pathwaybiologyArabidopsis ProteinsEndoplasmic reticulumMembrane Transport ProteinsSignal transducing adaptor proteinArticlesPlants Genetically ModifiedClathrinEndocytosisAdaptor Protein Complex mu SubunitsTransport proteinCell biologyProtein Transport030104 developmental biologyProtein Sorting SignalsMutationbiology.protein010606 plant biology & botanyPlant Physiology
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Transient Transformation of A. thaliana Seedlings by Vacuum Infiltration

2020

Transient expression in Arabidopsis thaliana seedlings allows fast expression of fluorescent markers for different subcellular compartments. This protocol describes a transient transformation assay with five-day-old seedlings using Agrobacterium tumefaciens-mediated vacuum infiltration. Three days after infiltration of the Agrobacterium containing an expression vector for a fluorescent marker of interest, cotyledon cells expressing the fluorescent protein can be imaged in a confocal microscope. This assay allows high-throughput screening of new constructs and the study of the localization of a large number of subcellular markers in Arabidopsis seedlings including wild-type, stable over-expr…

0106 biological sciences0301 basic medicineExpression vectorbiologyAgrobacteriumChemistryConfocalMutantAgrobacterium tumefaciensmedicine.diseasebiology.organism_classification01 natural sciencesFluorescenceCell biology03 medical and health sciences030104 developmental biologyArabidopsismedicineInfiltration (medical)010606 plant biology & botany
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Uptake of endocytic markers by rice cells: variations related to the growth phase.

2001

Endocytosis is now considered a basic cellular process common to plant cells. Although both non-specific and receptor-mediated endocytosis appear to take place in plant cells, the physiological role of the latter remains unclear. We have investigated the endocytic process in rice cell suspensions using two biotinylated proteins, peroxidase and bovine serum albumin (bHRP and bBSA), as markers. First, we show that markers are internalized by rice cells and appear in intracellular membranes. The uptake of the two markers is temperature dependent, saturable with time and markers dose and it is competed by free biotin. Thus, it shows the properties of a receptor-mediated process. We also show th…

HistologyEndocytic cycleCellSerum albuminBiotinEndocytosisPathology and Forensic Medicinechemistry.chemical_compoundmedicineCells CulturedPeroxidasebiologyCell CycleOryzaSerum Albumin BovineCell BiologyGeneral MedicineCell cyclePlant cellEndocytosisCell biologyNocodazolemedicine.anatomical_structureBiochemistrychemistrybiology.proteinIntracellularBiomarkersCell DivisionEuropean journal of cell biology
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N-Linked Glycosylation of the p24 Family Protein p24δ5 Modulates Retrograde Golgi-to-ER Transport of K/HDEL Ligands in Arabidopsis

2017

Abstract The K/HDEL receptor ERD2 mediates the transport of soluble endoplasmic reticulum (ER)-resident proteins containing a C-terminal K/HDEL signal from the Golgi apparatus back to the ER via COPI (COat Protein I)-coated vesicles. Sorting of ERD2 within COPI vesicles is facilitated by p24 proteins. In Arabidopsis , p24δ5 has been shown to interact directly with ERD2 via its luminal GOLD (GOLgi Dynamics) domain and with COPI proteins via its cytoplasmic C-terminal tail at the acidic pH of the Golgi apparatus. Several members of the p24 family in mammals and yeast have been shown to be glycosylated, but whether Arabidopsis p24 proteins are glycosylated and the role of the sugar moiety in p…

0301 basic medicineGlycosylationArabidopsisGolgi ApparatusPlant ScienceBiologyEndoplasmic ReticulumBiotecnologia03 medical and health sciencessymbols.namesakeN-linked glycosylationArabidopsisMolecular BiologyCOPIIArabidopsis ProteinsVesicleEndoplasmic reticulumCOPIGolgi apparatusbiology.organism_classificationCell biology030104 developmental biologyCytoplasmsymbolsProteïnes
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Systematic analysis of specific and nonspecific auxin effects on endocytosis and trafficking.

2021

Abstract The phytohormone auxin and its directional transport through tissues are intensively studied. However, a mechanistic understanding of auxin-mediated feedback on endocytosis and polar distribution of PIN auxin transporters remains limited due to contradictory observations and interpretations. Here, we used state-of-the-art methods to reexamine the auxin effects on PIN endocytic trafficking. We used high auxin concentrations or longer treatments versus lower concentrations and shorter treatments of natural indole-3-acetic acid (IAA) and synthetic naphthalene acetic acid (NAA) auxins to distinguish between specific and nonspecific effects. Longer treatments of both auxins interfere wi…

0106 biological sciencesPhysiologyEndocytic cycleArabidopsisBREFELDIN-APlant Science01 natural sciencesPROTEIN TRAFFICKINGNaphthaleneacetic AcidsPlant Growth RegulatorsGOLGI-APPARATUSheterocyclic compoundsInternalizationResearch Articlesmedia_commonchemistry.chemical_classification0303 health sciencesAcademicSubjects/SCI01270biologyAcademicSubjects/SCI02288AcademicSubjects/SCI02287AcademicSubjects/SCI02286food and beveragesCorrigendaEndocytosisCell biologyProtein TransportMEMBRANE TRAFFICKINGIntracellulartrans-Golgi NetworkGNOM ARF-GEFAcademicSubjects/SCI01280media_common.quotation_subjectEndocytosisClathrin03 medical and health sciencesAuxinGeneticsEndomembrane systemVACUOLAR TRAFFICKINGPLANT030304 developmental biologyIndoleacetic AcidsArabidopsis ProteinsMEDIATES ENDOCYTOSISCell MembraneBiology and Life SciencesTransporterTRANSPORTchemistrybiology.proteinARABIDOPSIS-THALIANA010606 plant biology & botanyPlant physiology
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Editorial: Highlights of ENPER 2019—European Network for Plant Endomembrane Research Meeting

2021

published

autophagyplant endomembranesAutophagyvacuolar traffickingPlant culturePlant ScienceBiologyEndocytosisExocytosisCell biologySB1-1110ER-golgi traffickingddc:570endocytosisEndomembrane systemplant endomembranes ER-golgi trafficking autophagy endocytosis exocytosis vacuolar traffickingexocytosisGeneralLiterature_REFERENCE(e.g.dictionariesencyclopediasglossaries)Frontiers in Plant Science
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Trafficking of the human transferrin receptor in plant cells: effects of tyrphostin A23 and brefeldin A.

2006

Plant cells possess much of the molecular machinery necessary for receptor-mediated endocytosis (RME), but this process still awaits detailed characterization. In order to identify a reliable and well-characterized marker to investigate RME in plant cells, we have expressed the human transferrin receptor (hTfR) in Arabidopsis protoplasts. We have found that hTfR is mainly found in endosomal (Ara7- and FM4-64-positive) compartments, but also at the plasma membrane, where it mediates binding and internalization of its natural ligand transferrin (Tfn). Cell surface expression of hTfR increases upon treatment with tyrphostin A23, which inhibits the interaction between the YTRF endocytosis signa…

Endosomemedia_common.quotation_subjectArabidopsisTransferrin receptorPlant ScienceBiologyEndocytosischemistry.chemical_compoundReceptors TransferrinGeneticsHumansEnzyme InhibitorsInternalizationmedia_commonchemistry.chemical_classificationProtein Synthesis InhibitorsBrefeldin AProtoplastsCell BiologyReceptor-mediated endocytosisBrefeldin ATyrphostinsPlants Genetically ModifiedCell biologyAdaptor Protein Complex mu SubunitsCytosolProtein TransportchemistryGene Expression RegulationTransferrinThe Plant journal : for cell and molecular biology
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Sorting signals in the cytosolic tail of membrane proteins involved in the interaction with plant ARF1 and coatomer.

2004

Summary In mammals and yeast, a cytosolic dilysine motif is critical for endoplasmic reticulum (ER) localization of type I membrane proteins. Retrograde transport of type I membrane proteins containing dilysine motifs at their cytoplasmic carboxy (C)-terminal tail involves the interaction of these motifs with the COPI coat. The C-terminal dilysine motif has also been shown to confer ER localization to type I membrane proteins in plant cells. Using in vitro binding assays, we have analyzed sorting motifs in the cytosolic tail of membrane proteins, which may be involved in the interaction with components of the COPI coat in plant cells. We show that a dilysine motif in the −3,−4 position (rel…

CooperativityPlant ScienceBiologyCoatomer Proteinchemistry.chemical_compoundGeneticsAmino Acid SequencePlant ProteinsBinding SitesSequence Homology Amino AcidEndoplasmic reticulumProtoplastsMembrane ProteinsOryzaCell BiologyEndoplasmic reticulum localizationCOPIBrefeldin APeptide FragmentsCell biologyKineticsProtein SubunitsMembrane proteinchemistryAmino Acid SubstitutionCoatomerCytoplasmADP-Ribosylation Factor 1Sequence AlignmentSignal TransductionThe Plant journal : for cell and molecular biology
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Loss of

2020

The early secretory pathway involves bidirectional transport between the endoplasmic reticulum (ER) and the Golgi apparatus and is mediated by coat protein complex I (COPI)-coated and coat protein complex II (COPII)-coated vesicles. COPII vesicles are involved in ER to Golgi transport meanwhile COPI vesicles mediate intra-Golgi transport and retrograde transport from the Golgi apparatus to the ER. The key component of COPI vesicles is the coatomer complex, that is composed of seven subunits (α/β/β'/γ/δ/ε/ζ). In Arabidopsis two genes coding for the β-COP subunit have been identified, which are the result of recent tandem duplication. Here we have used a loss-of-function approach to study the…

0106 biological sciences0301 basic medicineProtein subunitArabidopsisPlant Sciencelcsh:Plant culture01 natural sciences03 medical and health sciencessymbols.namesakelcsh:SB1-1110coat protein II (COPII)Plantes Cèl·lules i teixitsCOPIICreixement (Plantes)Secretory pathwayOriginal Researchsalt stressChemistryEndoplasmic reticulumVesiclecoat protein I (COPI)plant growthCOPIGolgi apparatusCell biology030104 developmental biologyCoatomerβ-COPGolgi apparatussymbols010606 plant biology & botanyFrontiers in plant science
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Selective uptake and degradation of c-Fos and v-Fos by rat liver lysosomes

1996

AbstractThe transcription factor c-Fos is a short-lived protein and calpains and ubiquitin-dependent systems have been proposed to be involved in its degradation. In this report, we consider a lysosomal degradation pathway for c-Fos. Using a cell-free assay, we have found that freshly isolated lysosomes can take up and degrade c-Fos with high efficiency. v-Fos, the oncogenic counterpart of c-Fos, can also be taken up by lysosomes, yet the amount of incorporated protein is much lower. c-Fos uptake is independent of its phosphorylation state but it appears to be regulated by dimerization with differentially phosphorylated forms of c-Jun, while v-Fos escapes this regulation. Moreover, we show …

LeupeptinsProto-Oncogene Proteins c-junBiophysicsProtein degradationProtein degradationTransfectionBiochemistryc-FosCell Linechemistry.chemical_compoundStructural BiologyLysosomeGeneticsmedicineAnimalsHumansProtease InhibitorsTrypsinPhosphorylationMolecular BiologyTranscription factorc-FosCell-Free Systembiologyc-junLeupeptinc-Junv-FosCalpainCell BiologyLysosomeRecombinant ProteinsRatsKineticsOncogene Proteins v-fosmedicine.anatomical_structureLiverchemistryBiochemistrybiology.proteinPhosphorylationElectrophoresis Polyacrylamide GelLysosomesProto-Oncogene Proteins c-fosHeLa CellsFEBS Letters
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Putative p24 complexes in Arabidopsis contain members of the delta and beta subfamilies and cycle in the early secretory pathway

2013

p24 proteins are a family of type I membrane proteins localized to compartments of the early secretory pathway and to coat protein I (COPI)- and COPII-coated vesicles. They can be classified, by sequence homology, into four subfamilies, named p24α, p24β, p24γ, and p24δ. In contrast to animals and fungi, plants contain only members of the p24β and p24δ subfamilies, the latter probably including two different subclasses. It has previously been shown that transiently expressed red fluorescent protein (RFP)-p24δ5 (p24δ1 subclass) localizes to the endoplasmic reticulum (ER) at steady state as a consequence of highly efficient COPI-based recycling from the Golgi apparatus. It is now shown that tr…

PhysiologyArabidopsisGolgi ApparatusPlant ScienceEndoplasmic ReticulumGreen fluorescent proteinsymbols.namesakeArabidopsisImmunoprecipitationER–Golgi transportcoat protein II (COPII)Secretory pathwayMicroscopy ConfocalSecretory PathwaybiologyArabidopsis ProteinsEndoplasmic reticulumcoat protein I (COPI)COPIImmunogold labellingGolgi apparatussecretory pathway.biology.organism_classificationImmunohistochemistryCell biologyMicroscopy Electronp24 proteinsMembrane proteinsymbolsResearch PaperPlasmidsJournal of Experimental Botany
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ß-COP mutants show specific high sensitivity to chloride ions.

2021

Coat Protein I (COPI) consists of a complex (coatomer) formed by seven subunits (α-, β-, β’-, γ-, δ-, ε-, and ζ-COP) that is recruited to Golgi membranes to form vesicles that shuttle from the Golgi apparatus to the ER and between Golgi stacks. Recently, it has been described that loss of function mutants of the two Arabidopsis β-COP genes, β1-COP and β2-COP, showed increased sensitivity to salt stress (NaCl). Using a mixture of either Na(+) or Cl(−) salts, we have now found that β-COP mutants are specifically and highly sensitive to chloride ions.

0106 biological sciences0301 basic medicineShort CommunicationMutantArabidopsisSalt (chemistry)Plant ScienceBiology01 natural sciencesChlorideCoatomer Protein03 medical and health sciencessymbols.namesakeChloridesArabidopsismedicinechemistry.chemical_classificationIonsVesicleCOPIGolgi apparatusbiology.organism_classificationhumanitiesProtein Subunits030104 developmental biologyPhenotypechemistryCoatomerMutationsymbolsBiophysics010606 plant biology & botanymedicine.drugProtein BindingPlant signalingbehavior
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Clathrin-mediated constitutive endocytosis of PIN auxin efflux carriers in Arabidopsis.

2007

SummaryEndocytosis is an essential process by which eukaryotic cells internalize exogenous material or regulate signaling at the cell surface [1]. Different endocytic pathways are well established in yeast and animals; prominent among them is clathrin-dependent endocytosis [2, 3]. In plants, endocytosis is poorly defined, and no molecular mechanism for cargo internalization has been demonstrated so far [4, 5], although the internalization of receptor-ligand complexes at the plant plasma membrane has recently been shown [6]. Here we demonstrate by means of a green-to-red photoconvertible fluorescent reporter, EosFP [7], the constitutive endocytosis of PIN auxin efflux carriers [8] and their …

Auxin effluxmedia_common.quotation_subjectRecombinant Fusion ProteinseducationEndocytic cycleArabidopsisBiologyEndocytosisClathrinPlant RootsGeneral Biochemistry Genetics and Molecular BiologyExocytosisGenes ReporterPIN proteinsInternalizationmedia_commonAgricultural and Biological Sciences(all)Indoleacetic AcidsBiochemistry Genetics and Molecular Biology(all)Arabidopsis ProteinsProtoplastsCell MembraneClathrin-Coated VesiclesReceptor-mediated endocytosisClathrinEndocytosisCell biologyLuminescent Proteinsbiology.proteinCELLBIOGeneral Agricultural and Biological SciencesCurrent biology : CB
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Function of AtPGAP1 in GPI anchor lipid remodeling and transport to the cell surface of GPI-anchored proteins

2021

ABSTRACTGPI-anchored proteins (GPI-APs) play an important role in a variety of plant biological processes including growth, stress response, morphogenesis, signalling and cell wall biosynthesis. The GPI-anchor contains a lipid-linked glycan backbone that is synthesized in the endoplasmic reticulum (ER) where it is subsequently transferred to the C-terminus of proteins containing a GPI signal peptide by a GPI transamidase. Once the GPI anchor is attached to the protein, the glycan and lipid moieties are remodelled. In mammals and yeast, this remodelling is required for GPI-APs to be included in Coat Protein II (COPII) coated vesicles for their ER export and subsequent transport to the cell s…

Signal peptideGlycanbiologyChemistryEndoplasmic reticulumCellCoated vesiclebiology.organism_classificationCell biologycarbohydrates (lipids)chemistry.chemical_compoundmedicine.anatomical_structureArabidopsismedicinebiology.proteinlipids (amino acids peptides and proteins)InositolCOPII
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Secretory Pathway Research: The More Experimental Systems the Better

2012

Transient gene expression, in plant protoplasts or specific plant tissues, is a key technique in plant molecular cell biology, aimed at exploring gene products and their modifications to examine functional subdomains, their interactions with other biomolecules, and their subcellular localization. Here, we highlight some of the major advantages and potential pitfalls of the most commonly used transient gene expression models and illustrate how ectopic expression and the use of dominant mutants can provide insights into protein function.

Protein functionMolecular cell biologySecretory PathwayProtoplastsResearchfungiMutantfood and beveragesBiological TransportCell BiologyPlant ScienceBiologySubcellular localizationCell biologyPlant LeavesPerspectiveGene expressionEctopic expressionGeneSecretory pathwayFluorescent DyesThe Plant Cell
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ER-to-Golgi Transport: The COPII-Pathway

2006

The endoplasmic reticulum (ER) is the starting site of the journey of newly synthesized proteinsto the apoplast, plasma membrane and to the vacuolar compartments. Transport between these membranecompartments of the secretory pathway in eukaryotic cells is mediated by vesicles, which are producedby a budding mechanism involving coat proteins that capture specific cargo molecules and helppackage them into coated vesicles. These vesicles are known as COPII-coated vesicles, and are usuallyisolated after their induction in vitro using microsomal membranes, cytosol and a non-hydrolyzableGTP-analogue. COPII-coated vesicles are formed at specific sites in the ER known as ER-exit sites(ERES). ERES a…

Cytosolsymbols.namesakeChemistryEndoplasmic reticulumVesicleMicrosomesymbolsCoated vesicleGolgi apparatusCOPIISecretory pathwayCell biology
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A Model for ERD2 Function in Higher Plants

2020

ER lumenal proteins have a K(H)DEL motif at their C-terminus. This is recognized by the ERD2 receptor (KDEL receptor in animals), which localizes to the Golgi apparatus and serves to capture escaped ER lumenal proteins. ERD2-ligand complexes are then transported back to the ER via COPI coated vesicles. The neutral pH of the ER causes the ligands to dissociate with the receptor being returned to the Golgi. According to this generally accepted scenario, ERD2 cycles between the ER and the Golgi, although it has been found to have a predominant Golgi localization. In this short article, we present a model for the functioning of ERD2 receptors in higher plants that explains why it is difficult t…

0106 biological sciences0301 basic medicineCOPI-Coated Vesiclescis-GolgiKDELMini ReviewPopulationPlant Sciencelcsh:Plant culture01 natural sciences03 medical and health sciencessymbols.namesakeERD2/KDEL receptorlcsh:SB1-1110Neutral phGolgi localizationeducationReceptorCOPII-vesicleeducation.field_of_studyChemistryGolgi apparatusCell biologysecretory unit030104 developmental biologyCOPI-vesiclesymbolsK(H)DEL ligandFunction (biology)010606 plant biology & botanyFrontiers in Plant Science
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Identification of Trans-Golgi Network Proteins in Arabidopsis thaliana Root Tissue

2014

Knowledge of protein subcellular localization assists in the elucidation of protein function and understanding of different biological mechanisms that occur at discrete subcellular niches. Organelle-centric proteomics enables localization of thousands of proteins simultaneously. Although such techniques have successfully allowed organelle protein catalogues to be achieved, they rely on the purification or significant enrichment of the organelle of interest, which is not achievable for many organelles. Incomplete separation of organelles leads to false discoveries, with erroneous assignments. Proteomics methods that measure the distribution patterns of specific organelle markers along densit…

ProteomicsArabidopsis thalianaArabidopsisorganelle proteomicsProteomicsPlant RootsBiochemistryArticlesymbols.namesakeArtificial IntelligenceTandem Mass SpectrometryArabidopsisOrganelleArabidopsis thalianaChromatography Reverse-PhaseimmunoisolationbiologyArabidopsis Proteinstrans-Golgi networkGeneral ChemistryGolgi apparatusbiology.organism_classificationSubcellular localizationLOPITCell biologyIsobaric labelingphenoDiscomachine learningsymbolsIdentification (biology)Journal of Proteome Research
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Coupled transport of Arabidopsis p24 proteins at the ER–Golgi interface

2012

p24 proteins are a family of type I membrane proteins localized to compartments of the early secretory pathway and to coat protein I (COPI)- and COPII-coated vesicles. They can be classified, by sequence homology, into four subfamilies, named p24α, p24β, p24γ, and p24δ. In contrast to animals and fungi, plants contain only members of the p24β and p24δ subfamilies. It has previously been shown that transiently expressed red fluorescent protein (RFP)–p24δ5 localizes to the endoplasmic reticulum (ER) as a consequence of highly efficient COPI-based recycling from the Golgi apparatus. Using specific antibodies, endogenous p24δ5 has now been localized to the ER and p24β2 to the Golgi apparatus in…

PhysiologyMolecular Sequence DataArabidopsisGolgi ApparatusPlant ScienceBiologyEndoplasmic Reticulumcoat protein (COP) IIcoat protein (COP) Isymbols.namesakeAmino Acid SequenceER–Golgi transportCOPIISecretory pathwayArabidopsis ProteinsVesicular-tubular clusterEndoplasmic reticulumMembrane ProteinsCOPIGolgi apparatussecretory pathwayTransport proteinCell biologyProtein TransportSecretory proteinp24 proteinssymbolsProtein BindingResearch PaperJournal of Experimental Botany
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