eIF3 targets cell-proliferation messenger RNAs for translational activation or repression
about
Ancient Origin of cGAS-STING Reveals Mechanism of Universal 2',3' cGAMP Signaling.Modulation of the Translational Landscape During Herpesvirus Infection5' UTR m(6)A Promotes Cap-Independent TranslationeIF3d is an mRNA cap-binding protein that is required for specialized translation initiationMutations in Nonessential eIF3k and eIF3l Genes Confer Lifespan Extension and Enhanced Resistance to ER Stress in Caenorhabditis elegansNew frontiers in translational control of the cancer genomeExperimental and Computational Considerations in the Study of RNA-Binding Protein-RNA InteractionsGPRC5A suppresses protein synthesis at the endoplasmic reticulum to prevent radiation-induced lung tumorigenesisABCE1 is essential for S phase progression in human cellsAssembly of eIF3 Mediated by Mutually Dependent Subunit Insertion.Toward the mechanism of eIF4F-mediated ribosomal attachment to mammalian capped mRNAsHighly expressed ribosomal protein L34 indicates poor prognosis in osteosarcoma and its knockdown suppresses osteosarcoma proliferation probably through translational controlRole of Eukaryotic Initiation Factors during Cellular Stress and Cancer ProgressionHuman eIF3: from 'blobology' to biological insight.Rps26 directs mRNA-specific translation by recognition of Kozak sequence elements.Knockdown of eukaryotic translation initiation factor 3 subunit D (eIF3D) inhibits proliferation of acute myeloid leukemia cells.A researcher's guide to the galaxy of IRESs.Dynamics of IRES-mediated translation.The eIF3 complex of Trypanosoma brucei: composition conservation does not imply the conservation of structural assembly and subunits function.New insights into the topology of the scanning ribosome during translation initiation: Lessons from viruses.DHX29 and eIF3 cooperate in ribosomal scanning on structured mRNAs during translation initiation.Translational regulation of viral secretory proteins by the 5' coding regions and a viral RNA-binding protein.Overexpression of the human antigen R suppresses the immediate paradoxical proliferation of melanoma cell subpopulations in response to suboptimal BRAF inhibition.EIF3D promotes gallbladder cancer development by stabilizing GRK2 kinase and activating PI3K-AKT signaling pathwayTranslational Dysregulation in Cancer: Molecular Insights and Potential Clinical Applications in Biomarker Development.Decreasing Eukaryotic Initiation Factor 3C (EIF3C) Suppresses Proliferation and Stimulates Apoptosis in Breast Cancer Cell Lines Through Mammalian Target of Rapamycin (mTOR) Pathway.A Transcript-Specific eIF3 Complex Mediates Global Translational Control of Energy Metabolism.Human eIF3b and eIF3a serve as the nucleation core for the assembly of eIF3 into two interconnected modules: the yeast-like core and the octamer.Ubiquitylation at the crossroads of development and disease.Widespread Translational Remodeling during Human Neuronal Differentiation.Translation initiation factor eIF4G1 preferentially binds yeast transcript leaders containing conserved oligo-uridine motifs.Functional 5' UTR mRNA structures in eukaryotic translation regulation and how to find them.Embraced by eIF3: structural and functional insights into the roles of eIF3 across the translation cycle.A Unique ISR Program Determines Cellular Responses to Chronic Stress.Viral internal ribosomal entry sites: four classes for one goal.Conserved mRNA-binding proteomes in eukaryotic organisms.Reading m6A in the Transcriptome: m6A-Binding Proteins.Rethinking m6A Readers, Writers, and Erasers.Role of the visual experience-dependent nascent proteome in neuronal plasticity.Fluorescently-tagged human eIF3 for single-molecule spectroscopy.
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P2860
eIF3 targets cell-proliferation messenger RNAs for translational activation or repression
description
2015 թուականի Յունիսին հրատարակուած գիտական յօդուած
@hyw
2015 թվականի հունիսին հրատարակված գիտական հոդված
@hy
article publié dans la revue scientifique Nature
@fr
artículu científicu espublizáu en 2015
@ast
scientific journal article
@en
vedecký článok (publikovaný 2015/06/04)
@sk
vědecký článek publikovaný v roce 2015
@cs
wetenschappelijk artikel (gepubliceerd op 2015/06/04)
@nl
наукова стаття, опублікована в червні 2015
@uk
مقالة علمية (نشرت في 4-6-2015)
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name
eIF3 targets cell-proliferation messenger RNAs for translational activation or repression
@ast
eIF3 targets cell-proliferation messenger RNAs for translational activation or repression
@en
eIF3 targets cell-proliferation messenger RNAs for translational activation or repression
@nl
type
label
eIF3 targets cell-proliferation messenger RNAs for translational activation or repression
@ast
eIF3 targets cell-proliferation messenger RNAs for translational activation or repression
@en
eIF3 targets cell-proliferation messenger RNAs for translational activation or repression
@nl
prefLabel
eIF3 targets cell-proliferation messenger RNAs for translational activation or repression
@ast
eIF3 targets cell-proliferation messenger RNAs for translational activation or repression
@en
eIF3 targets cell-proliferation messenger RNAs for translational activation or repression
@nl
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eIF3 targets cell-proliferation messenger RNAs for translational activation or repression
@en
P2093
Amy S. Y. Lee
Jamie H. D. Cate
Philip J. Kranzusch
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P304
P3181
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10.1038/NATURE14267
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P577
2015-06-04T00:00:00Z
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P6179
1013428505