Search results for "TRANSMEMBRANE PROTEIN"

showing 10 items of 186 documents

Random mutations directed to transmembrane and loop domains of the light-harvesting chlorophyll a/b protein: impact on pigment binding.

1999

The major light-harvesting complex of photosystem II (LHCII) can be reconstituted in vitro by folding its bacterially expressed apoprotein, Lhcb, in detergent solution in the presence of chlorophylls and carotenoids. To compare the impact of alpha-helical transmembrane domains and hydrophilic loop domains of the apoprotein on complex formation and stability, we introduced random mutations into a segment of the protein comprising the stromal loop, the third (C-proximal) transmembrane helix, and part of the amphipathic helix in the C-terminal domain. The mutant versions of Lhcb were screened for the loss of their ability to form stable LHCII upon reconstitution in vitro. Most steps during the…

Chlorophyll bChlorophyllProtein FoldingPigment bindingMolecular Sequence DataPhotosynthetic Reaction Center Complex ProteinsLight-Harvesting Protein ComplexesBiologyBiochemistryProtein Structure Secondarychemistry.chemical_compoundProtein structureChlorophyll bindingAmino Acid SequencePeptide sequencePeasMembrane ProteinsPhotosystem II Protein ComplexCarotenoidsTransmembrane proteinProtein Structure TertiaryTransmembrane domainSpectrometry FluorescencechemistryBiochemistryEnergy TransferMutationMutagenesis Site-DirectedProtein foldingProtein BindingBiochemistry
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IM30 triggers membrane fusion in cyanobacteria and chloroplasts

2015

The thylakoid membrane of chloroplasts and cyanobacteria is a unique internal membrane system harbouring the complexes of the photosynthetic electron transfer chain. Despite their apparent importance, little is known about the biogenesis and maintenance of thylakoid membranes. Although membrane fusion events are essential for the formation of thylakoid membranes, proteins involved in membrane fusion have yet to be identified in photosynthetic cells or organelles. Here we show that IM30, a conserved chloroplast and cyanobacterial protein of approximately 30 kDa binds as an oligomeric ring in a well-defined geometry specifically to membranes containing anionic lipids. Triggered by Mg2+, membr…

ChloroplastsGeneral Physics and AstronomyBiologyMembrane FusionThylakoidsGeneral Biochemistry Genetics and Molecular BiologyBacterial ProteinsCentrifugation Density GradientIntegral membrane proteinMultidisciplinaryGalactolipidsPeripheral membrane proteinSynechocystisLipid bilayer fusionfood and beveragesPhosphatidylglycerolsGeneral ChemistryTransmembrane proteinCell biologyChloroplastMembraneThylakoidLiposomesQuantasomeGlycolipidsProtein BindingNature Communications
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Staphylococcal α-toxin: the role of the N-terminus in formation of the heptameric pore — a fluorescence study1This work contains parts of the M.D. th…

1997

Staphylococcus aureus alpha-toxin forms heptameric pores on eukaryotic cell membranes. Assembly of the heptamer precedes formation of the transmembrane pore. The latter event depends on a conformational change that drives a centrally located stretch of 15 amino acid residues into the lipid bilayer. A second region of the molecule that has been implicated in the pre-pore to pore transition is the far N-terminus. Here, we used fluorescently labeled single cysteine replacement mutants to analyze the functional role of the far N-terminus of alpha-toxin. Pyrene attached to mutants S3C, I5C and 17C forms excimers within the toxin pore complex. This indicates that the distance of adjacent N-termin…

Conformational changePore complexStereochemistryMembrane lipidsBiophysicsCell BiologyN-terminusα-ToxinBiochemistryTransmembrane proteinchemistry.chemical_compoundProtein structureMembranechemistryHeptameric poreBiophysicsPyreneLipid bilayer(Staphylococcus aureus)Biochimica et Biophysica Acta (BBA) - Biomembranes
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Molecular architecture of a toxin pore: a 15-residue sequence lines the transmembrane channel of staphylococcal alpha-toxin.

1996

Staphylococcus aureus alpha-toxin is a hydrophilic polypeptide of 293 amino acids that produces heptameric transmembrane pores. During assembly, the formation of a pre-pore precedes membrane permeabilization; the latter is linked to a conformational change in the oligomer. Here, 41 single-cysteine replacement toxin mutants were thiol-specifically labelled with the polarity-sensitive fluorescent probe acrylodan. After oligomerization on membranes, only the mutants with acrylodan attached to residues in the sequence 118-140 exhibited a marked blue shift in the fluorescence emission maximum, indicative of movement of the fluorophore to a hydrophobic environment. Within this region, two functio…

Conformational changeStaphylococcus aureusProtein ConformationMembrane lipidsBacterial ToxinsMolecular Sequence DataBiologyGeneral Biochemistry Genetics and Molecular BiologyCell membraneHemolysin ProteinsProtein structure2-NaphthylaminemedicinePoint MutationAmino Acid SequenceCysteineMolecular BiologyPeptide sequenceFluorescent Dyeschemistry.chemical_classificationBinding SitesGeneral Immunology and MicrobiologyMolecular StructureGeneral NeuroscienceCell MembraneTransmembrane proteinAmino acidmedicine.anatomical_structureMembraneSpectrometry FluorescenceBiochemistrychemistryLiposomesBiophysicsMutagenesis Site-DirectedResearch ArticleThe EMBO journal
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Selective targeting of avidin/mannose 6-phosphate receptor chimeras to early or late endosomes

2000

Summary In this study we have used the Semliki forest virus expression system to transiently express chimeric proteins that contain transmembrane and cytoplasmic domains of the cation-independent mannose 6-phosphate receptor (CI-MPR) fused to chicken avidin. Immunofluorescence and electron microscopy studies showed that the chimeric protein with the entire cytoplasmic domain of CI-MPR was transported to late endosomes, where it accumulated. We made use of the biotin-binding capacity of lumenal avidin, and found that, in agreement with this distribution, the chimeric protein could be labelled with biotinylated HRP endocytosed for a long, but not a brief, period of time. However, truncation o…

CytoplasmTime FactorsHistologyEndosomeRecombinant Fusion ProteinsAmino Acid MotifsGreen Fluorescent ProteinsEndosomesEndocytosisReceptor IGF Type 2Pathology and Forensic Medicine03 medical and health sciencesCationsCricetinaeAnimalsBiotinylation030304 developmental biologyProtein Synthesis Inhibitors0303 health sciencesBrefeldin AMannose 6-phosphate receptorbiologyCell Membrane030302 biochemistry & molecular biologyPovidoneBiological TransportCell BiologyGeneral MedicineAvidinSilicon DioxideSemliki forest virusFusion proteinMolecular biologyEndocytosisTransmembrane proteinProtein Structure TertiaryLuminescent ProteinsMicroscopy ElectronTransmembrane domainCross-Linking ReagentsMicroscopy FluorescenceBiotinylationbiology.proteinCattleChickensDimerizationAvidinEuropean Journal of Cell Biology
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Detergent Properties Influence the Stability of the Glycophorin A Transmembrane Helix Dimer in Lysophosphatidylcholine Micelles

2012

AbstractDetergents might affect membrane protein structures by promoting intramolecular interactions that are different from those found in native membrane bilayers, and fine-tuning detergent properties can be crucial for obtaining structural information of intact and functional transmembrane proteins. To systematically investigate the influence of the detergent concentration and acyl-chain length on the stability of a transmembrane protein structure, the stability of the human glycophorin A transmembrane helix dimer has been analyzed in lyso-phosphatidylcholine micelles of different acyl-chain length. While our results indicate that the transmembrane protein is destabilized in detergents w…

DetergentsMolecular Sequence DataBiophysicsMicelleProtein Structure SecondaryCell membraneHydrophobic mismatchmedicineHumansGlycophorinAmino Acid SequenceGlycophorinsLipid bilayerMicellesAggregation numberDose-Response Relationship DrugbiologyChemistryCell MembraneMembraneLysophosphatidylcholinesTransmembrane proteinTransmembrane domainmedicine.anatomical_structureBiochemistrybiology.proteinBiophysicslipids (amino acids peptides and proteins)Protein MultimerizationHydrophobic and Hydrophilic InteractionsBiophysical Journal
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Expression and purification of polyhistidine-tagged rotavirus NSP4 proteins in insect cells

2003

The rotavirus nonstructural NSP4 protein, a transmembrane endoplasmic reticulum-specific glycoprotein, has been described as the first viral enterotoxin. Purified NSP4 or a peptide corresponding to NSP4 residues 114-135 induces diarrhea in young mice. NSP4 has a membrane-destabilizing activity and causes an increase in intracellular calcium levels and chloride secretion by a calcium-dependent signalling pathway in eucaryotic cells. In this study, four recombinant baculoviruses were generated expressing the rotavirus NSP4 glycoprotein from the human strains Wa and Ito, the porcine strain OSU, and the simian strain SA11, which belong to two different NSP4 genotypes, A and B. The recombinant g…

DiarrheaRotavirusGlycosylationInsectaImmunoprecipitationRecombinant Fusion ProteinsvirusesGenetic VectorsViral Nonstructural ProteinsProtein Engineeringmedicine.disease_causelaw.inventionMicelawRotavirusmedicineAnimalsHumansHistidinePolyacrylamide gel electrophoresisCells CulturedGlycoproteinsToxins Biologicalchemistry.chemical_classificationChemistryEndoplasmic reticulumbiochemical phenomena metabolism and nutritionMolecular biologyTransmembrane proteinBlotGene Expression RegulationRecombinant DNAElectrophoresis Polyacrylamide GelGlycoproteinBiotechnologyProtein Expression and Purification
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Unfolding a transmembrane helix dimer: A FRET study in mixed micelles

2009

The exact nature of membrane protein folding and assembly is not understood in detail yet. Addition of SDS to a membrane protein dissolved in mild, non-polar detergent results in formation of mixed micelles and in subsequent denaturation of higher ordered membrane protein structures. The exact nature of this denaturation event is, however, enigmatic, and separation of an individual helix pair in mixed micelles has also not been reported yet. Here we followed unfolding of the human glycophorin A transmembrane helix dimer in mixed micelles by fluorescence spectroscopy. Energy transfer between differently labelled glycophorin A transmembrane helices decreased with increasing SDS mole fractions…

DimerBiophysicsBiochemistryMicelleProtein Structure SecondarySurface-Active Agentschemistry.chemical_compoundFluorescence Resonance Energy TransferHumansGlycophorinGlycophorinsMolecular BiologyMicellesbiologyChemistryPeripheral membrane proteinSodium Dodecyl SulfateTransmembrane proteinProtein Structure TertiaryKineticsTransmembrane domainCrystallographyFörster resonance energy transferMembrane proteinbiology.proteinProtein MultimerizationArchives of Biochemistry and Biophysics
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Dual Topology of the Hepatitis B Virus Large Envelope Protein

2001

The large (L) envelope protein of the hepatitis B virus (HBV) has the peculiar capacity to form two transmembrane topologies via an as yet uncharacterized process of partial post-translational translocation of its pre-S domain across membranes. In view of a current model that predicts an HBV-specific channel generated during virion envelope assembly to enable pre-S translocation, we have examined parameters influencing L topogenesis by using protease protection analysis of wild-type and mutant L proteins synthesized in transfected cells. We demonstrate that contrary to expectation, all determinants, thought to be responsible for channel formation, are dispensable for pre-S reorientation. In…

Endoplasmic reticulumCell BiologyBiologyMembrane transportTransloconBiochemistryTransmembrane proteinTransport proteinCell biologyTransmembrane domainDual topologyProtein structureBiochemistryMolecular BiologyJournal of Biological Chemistry
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Expression of Active Streptolysin O in Escherichia coli as a Maltose-Binding-Protein-Streptolysin-O Fusion Protein. The N-Terminal 70 Amino Acids are…

1996

Streptolysin 0 (SLO) is the prototype of a family of cytolysins that consists of proteins which bind to cholesterol and form very large transmembrane pores. Structure/function studies on the pore-forming cytolysin SLO have been complicated by the proteolytic inactivation of a substantial portion of recombinant SLO (rSLO) expressed in Escherichia coli. To overcome this problem, translational fusions between the E. coli maltose-binding protein (MBP) gene and SLO were constructed, using the vectors pMAL-p2 and pMAL-c2. MBP-SLO fusion proteins were degraded if secreted into the E. coli periplasm, but intact, soluble MBP-SLO fusion proteins were produced at high levels in the cytoplasm. Active S…

ErythrocytesMonosaccharide Transport Proteinsgenetic structuresProtein ConformationStreptococcus pyogenesRecombinant Fusion ProteinsMolecular Sequence Datamedicine.disease_causeHemolysisBiochemistryMaltose-Binding ProteinsStructure-Activity RelationshipMaltose-binding proteinProtein structureBacterial ProteinsEscherichia colimedicineHumansCloning MolecularEscherichia coliSequence DeletionPore-forming toxinBase SequencebiologyEscherichia coli ProteinsFluoresceinsFusion proteineye diseasesTransmembrane proteinBiochemistryLiposomesStreptolysinsbiology.proteinATP-Binding Cassette TransportersStreptolysinsense organsCytolysinCarrier ProteinsSequence AnalysisEuropean Journal of Biochemistry
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