Search results for "Nuclear export signal"

showing 10 items of 21 documents

A comparative study of the degradation of yeast cyclins Cln1 and Cln2.

2016

The yeast cyclins Cln1 and Cln2 are very similar in both sequence and function, but some differences in their functionality and localization have been recently described. The control of Cln1 and Cln2 cellular levels is crucial for proper cell cycle initiation. In this work, we analyzed the degradation patterns of Cln1 and Cln2 in order to further investigate the possible differences between them. Both cyclins show the same half‐life but, while Cln2 degradation depends on ubiquitin ligases SCFG rr1 and SCFC dc4, Cln1 is affected only by SCFG rr1. Degradation analysis of chimeric cyclins, constructed by combining fragments from Cln1 and Cln2, identifies the N‐terminal sequence of the proteins…

0301 basic medicineSaccharomyces cerevisiaeSaccharomyces cerevisiaeGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciences0302 clinical medicineUbiquitincyclinNuclear export signalResearch ArticlesCyclinbiologyChemistryCln2Cln1SCF ubiquitin ligaseCell cyclebiology.organism_classificationYeastCell biology030104 developmental biologybiology.proteincell cycleNuclear transport030217 neurology & neurosurgeryFunction (biology)Research ArticleFEBS open bio
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Chromatin organization regulates viral egress dynamics.

2017

Various types of DNA viruses are known to elicit the formation of a large nuclear viral replication compartment and marginalization of the cell chromatin. We used three-dimensional soft x-ray tomography, confocal and electron microscopy, combined with numerical modelling of capsid diffusion to analyse the molecular organization of chromatin in herpes simplex virus 1 infection and its effect on the transport of progeny viral capsids to the nuclear envelope. Our data showed that the formation of the viral replication compartment at late infection resulted in the enrichment of heterochromatin in the nuclear periphery accompanied by the compaction of chromatin. Random walk modelling of herpes s…

0301 basic medicineX-RAY TOMOGRAPHYvirusesmedicine.disease_cause2.2 Factors relating to physical environmentHistoneschemistry.chemical_compoundMiceINFECTION2.2 Factors relating to the physical environmentREPLICATION COMPARTMENTSAetiologyVirus ReleaseMicroscopyMultidisciplinaryMicroscopy ConfocalQRMICROSCOPYChromatin3. Good healthChromatinCell biologyTIMEOther Physical Sciencesmedicine.anatomical_structureInfectious DiseasesCapsidConfocalMedicineFemaleInfectionVESICLE FORMATIONNUCLEAR ARCHITECTUREHeterochromatinScienceBiology114 Physical sciencesArticleCell Line03 medical and health sciencesmedicineHerpes virusAnimalsCellular microbiologyNuclear export signalcell chromatinCell NucleusHERPES-SIMPLEX-VIRUSBiological TransportVirology030104 developmental biologyHerpes simplex viruschemistryViral replicationCELLS1182 Biochemistry cell and molecular biologyBiochemistry and Cell BiologyDNA virusesNucleusDNABiomarkersHISTONE MODIFICATIONSVirus Physiological PhenomenaScientific reports
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Nuclear Pore Complex Acetylation Regulates mRNA Export and Cell Cycle Commitment in Budding Yeast

2021

AbstractNuclear pore complexes (NPCs) mediate communication between the nucleus and the cytoplasm and regulate gene expression by interacting with transcription and mRNA export factors. Lysine acetyl-transferases (KATs) promote transcription through acetylation of chromatin-associated proteins. We find that Esa1, the KAT subunit of the yeast NuA4 complex, also acetylates the nuclear pore basket component Nup60 to promote mRNA export. Acetylation of Nup60 recruits to the nuclear basket the mRNA export factor Sac3, the scaffolding subunit of the Transcription and Export 2 (TREX-2) complex. Esa1-dependent nuclear export of mRNAs promotes entry into S phase, and is inhibited by the Hos3 deacety…

0303 health sciencesCell divisionChemistry[SDV]Life Sciences [q-bio]Cell cycleCell biology03 medical and health sciences0302 clinical medicineCytoplasmTranscription (biology)AcetylationGene expressionNuclear poreNuclear export signal030217 neurology & neurosurgery030304 developmental biology
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The small heat-shock protein α B-crystallin is essential for the nuclear localization of Smad4: impact on pulmonary fibrosis

2014

Idiopathic pulmonary fibrosis (IPF) is a devastating disease characterized by the proliferation of myofibroblasts and the accumulation of extracellular matrix (ECM) in the lungs. TGF-β1 is the major profibrotic cytokine involved in IPF and is responsible for myofibroblast proliferation and differentiation and ECM synthesis. αB-crystallin is constitutively expressed in the lungs and is inducible by stress, acts as a chaperone and is known to play a role in cell cytoskeleton architecture homeostasis. The role of αB-crystallin in fibrogenesis remains unknown. The principal signalling pathway involved in this process is the Smad-dependent pathway. We demonstrate here that αB-crystallin is stron…

Biologymedicine.diseaseHedgehog signaling pathwayPathology and Forensic MedicineCell biologyExtracellular matrixIdiopathic pulmonary fibrosisFibrosisHeat shock proteinPulmonary fibrosisImmunologymedicinesense organsNuclear export signalMyofibroblastThe Journal of Pathology
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XPO1E571K Mutation Modifies Exportin 1 Localisation and Interactome in B-cell Lymphoma

2020

The XPO1 gene encodes exportin 1 (XPO1) that controls the nuclear export of cargo proteins and RNAs. Almost 25% of primary mediastinal B-cell lymphoma (PMBL) and classical Hodgkin lymphoma (cHL) cases harboured a recurrent XPO1 point mutation (NM_003400, chr2:g61718472C&gt

Cancer ResearchMutantXPO1/CRM1[SDV.CAN]Life Sciences [q-bio]/Cancer[SDV.BC.BC]Life Sciences [q-bio]/Cellular Biology/Subcellular Processes [q-bio.SC]CRISPR–Cas9[SDV.BC.IC] Life Sciences [q-bio]/Cellular Biology/Cell Behavior [q-bio.CB]lcsh:RC254-282Article03 medical and health sciencesXPO10302 clinical medicineproteomics[SDV.CAN] Life Sciences [q-bio]/Cancerimmune system diseasesExportin-1hemic and lymphatic diseases[SDV.BC.IC]Life Sciences [q-bio]/Cellular Biology/Cell Behavior [q-bio.CB]medicine[SDV.BC.BC] Life Sciences [q-bio]/Cellular Biology/Subcellular Processes [q-bio.SC]B-cell lymphomaNuclear export signalproximity ligation assay030304 developmental biology0303 health sciencesimportin β1ChemistryB-cell lymphomaPoint mutationlcsh:Neoplasms. Tumors. Oncology. Including cancer and carcinogensmedicine.diseaseMolecular biologynuclear importindirect immunofluorescenceOncology030220 oncology & carcinogenesisMutation (genetic algorithm)nuclear exportNuclear transportCRISPR-Cas9
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Spatial regulation of the Start repressor Whi5

2009

The Saccharomyces cerevisiae Start repressor Whi5, the functional analogue of mammalian pRB, shuttles between the nucleus and the cytoplasm throughout the cell cycle: enters into the nucleus at the end of mitosis and remains nuclear until Start. We studied the mechanisms involved in this spatial regulation. The nuclear import depends on the beta-karyopherins of the classical import pathway Kap95 and Cse1. Whi5 contains a monopartite and a bipartite classical NLS localized in its N-terminal region which are functionally redundant. A fragment of Whi5 containing these NLSs is able to constitutively accumulate a GFP(4) protein inside the nucleus throughout the cell cycle, which suggests that th…

Cdc14Cell BiologyBiologyCell biologyCell nucleusmedicine.anatomical_structureBiochemistryCytoplasmmedicineNuclear transportNuclear proteinNuclear export signalCell Cycle ProteinMolecular BiologyMitosisDevelopmental BiologyCell Cycle
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Survivin’s Dual Role: An Export’s View

2007

Survivin is proposed to function as a mitotic regulator and an apoptosis inhibitor during development and pathogenesis. As such, survivin has aroused keen interest in disparate areas of basic and translational research. Survivin acts as a subunit of the chromosomal passenger complex (CPC), composed of the mitotic kinase Aurora-B, Borealin and INCENP, and is essential for proper chromosome segregation and cytokinesis. Our recent findings indicate that the nuclear export receptor Crm1 is critically involved in tethering the CPC to the centromere by interacting with a leucine-rich nuclear export signal (NES), evolutionary conserved in all mammalian survivin proteins. In addition, the survivin/…

Cell NucleusApoptosis InhibitorINCENPSurvivinActive Transport Cell NucleusCell BiologyCell cycleBiologyInhibitor of Apoptosis ProteinsNeoplasm ProteinsCell biologySurvivinAnimalsHumansNuclear export signalMicrotubule-Associated ProteinsneoplasmsMolecular BiologyMitosisCytokinesisNuclear localization sequenceDevelopmental BiologyCell Cycle
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Nuclear and Cytoplasmic Survivin: Molecular Mechanism, Prognostic, and Therapeutic Potential.

2007

Abstract Survivin's proposed dual role as an apoptosis inhibitor and a mitotic effector positioned it in the front line of cancer research. Notably, survivin is detected as a cytoplasmic and nuclear protein in cancer patients, which stimulated numerous studies to investigate and to speculate on the functional and prognostic significance of its dynamic localization. Recent evidence shows that the direct interaction of survivin with the nuclear export receptor Crm1 is critically involved in its intracellular localization and cancer-relevant functions. Here, we review our current understanding of the Crm1/survivin interface and discuss its potential prognostic and therapeutic relevance. [Cance…

CytoplasmCancer ResearchPathologymedicine.medical_specialtyApoptosis InhibitorSurvivinActive Transport Cell NucleusMitosisReceptors Cytoplasmic and NuclearKaryopherinsBiologyModels BiologicalInhibitor of Apoptosis ProteinsNeoplasmsSurvivinmedicineHumansNuclear proteinNuclear export signalReceptorMitosisCell NucleusEffectorCancerPrognosismedicine.diseaseNeoplasm ProteinsGene Expression Regulation NeoplasticOncologyCancer researchMicrotubule-Associated ProteinsBiologie
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Dynamic intracellular survivin in oral squamous cell carcinoma: underlying molecular mechanism and potential as an early prognostic marker

2007

Survivin functions as an apoptosis inhibitor and a regulator of cell division in many tumours. The intracellular localization of survivin in tumours has been suggested as a prognostic marker. However, current reports are inconsistent and the underlying molecular mechanisms are not understood. The present study has examined the localization and prognostic value of nuclear and cytoplasmic survivin in the pre-therapeutic biopsies from 71 oral and oropharyngeal squamous carcinoma (OSCC) patients. Statistical analysis indicated that preferential nuclear versus cytoplasmic survivin correlated with favourable versus unfavourable disease outcome. Uni- and multi-variate analysis showed that in contr…

CytoplasmProgrammed cell deathPathologymedicine.medical_specialtySurvivinReceptors Cytoplasmic and NuclearApoptosisKaplan-Meier EstimateCysteine Proteinase InhibitorsKaryopherinsInhibitor of Apoptosis ProteinsPathology and Forensic MedicineCell Line TumorSurvivinBiomarkers TumorCarcinomaHumansMedicineNuclear export signalneoplasmsCell NucleusNuclear Export SignalsPredictive markerbusiness.industryCell cyclePrognosismedicine.diseaseImmunohistochemistryNeoplasm ProteinsSquamous carcinomaOropharyngeal NeoplasmsHead and Neck NeoplasmsApoptosisCarcinoma Squamous CellCancer researchMouth NeoplasmsbusinessMicrotubule-Associated ProteinsThe Journal of Pathology
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Molecular basis of the functional distinction between Cln1 and Cln2 cyclins

2012

Cln1 and Cln2 are very similar but not identical cyclins. In this work, we tried to describe the molecular basis of the functional distinction between Cln1 and Cln2. We constructed chimeric cyclins containing different fragments of Cln1 and Cln2 and performed several functional analysis that make it possible to distinguish between Cln1 or Cln2. We identified that region between amino acids 225 and 299 of Cln2 is not only necessary but also sufficient to confer Cln2 specific functionality compared with Cln1. We also studied Cln1 and Cln2 subcellular localization identifying additional differences between them. Both cyclins are distributed between the nucleus and the cytoplasm, but Cln1 shows…

CytoplasmSaccharomyces cerevisiae ProteinsTranscription GeneticBlotting WesternGenes FungalGenetic VectorsGreen Fluorescent ProteinsActive Transport Cell NucleusSaccharomyces cerevisiaeKaryopherinsBiologyReportCyclinsGene Expression Regulation FungalmedicineAmino Acid SequenceNuclear export signalMolecular BiologyPeptide sequenceCyclinKaryopherinCell Nucleuschemistry.chemical_classificationCell Cycle CheckpointsCell BiologySubcellular localizationCell nucleusmedicine.anatomical_structureBiochemistrychemistryCytoplasmNuclear transportCDC28 Protein Kinase S cerevisiaePlasmidsDevelopmental BiologyCell Cycle
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