Global mRNA selection mechanisms for translation initiation.
about
Rpl22 is required for IME1 mRNA translation and meiotic induction in S. cerevisiae.The PfAlba1 RNA-binding protein is an important regulator of translational timing in Plasmodium falciparum blood stagesTunable protein synthesis by transcript isoforms in human cellsPoly(A) tail length regulates PABPC1 expression to tune translation in the heart.The 4E-BP Caf20p Mediates Both eIF4E-Dependent and Independent Repression of Translation.Stoichiometry and Change of the mRNA Closed-Loop Factors as Translating Ribosomes Transit from Initiation to Elongation.Integrated multi-omics analyses reveal the pleiotropic nature of the control of gene expression by Puf3pRibosome reinitiation can explain length-dependent translation of messenger RNA.Direct and Absolute Quantification of over 1800 Yeast Proteins via Selected Reaction Monitoring.The ribosomal protein Asc1/RACK1 is required for efficient translation of short mRNAsMechanism and Regulation of Protein Synthesis in Saccharomyces cerevisiae.eIF4B stimulates translation of long mRNAs with structured 5' UTRs and low closed-loop potential but weak dependence on eIF4G.QnAs with Alan G. HinnebuschHuman selenoprotein P and S variant mRNAs with different numbers of SECIS elements and inferences from mutant mice of the roles of multiple SECIS elements.Quick or quality? How mRNA escapes nuclear quality control during stress.mRNA length-sensing in eukaryotic translation: reconsidering the "closed loop" and its implications for translational control.Dynamic changes in eIF4F-mRNA interactions revealed by global analyses of environmental stress responses.Translation initiation factor eIF4G1 preferentially binds yeast transcript leaders containing conserved oligo-uridine motifs.The influence of microRNAs and poly(A) tail length on endogenous mRNA-protein complexes.Defining the protein complexome of translation termination factor eRF1: Identification of four novel eRF1-containing complexes that range from 20S to 57S in size.Ksp1-dependent phosphorylation of eIF4G modulates post-transcriptional regulation of specific mRNAs under glucose deprivation conditions.A Mad2-Mediated Translational Regulatory Mechanism Promoting S-Phase Cyclin Synthesis Controls Origin Firing and Survival to Replication Stress.Archetypal transcriptional blocks underpin yeast gene regulation in response to changes in growth conditions.mRNA Deadenylation Is Coupled to Translation Rates by the Differential Activities of Ccr4-Not Nucleases.The suppressive cap-binding complex factor 4EIP is required for normal differentiation
P2860
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P2860
Global mRNA selection mechanisms for translation initiation.
description
2015 nî lūn-bûn
@nan
2015 թուականի Յունուարին հրատարակուած գիտական յօդուած
@hyw
2015 թվականի հունվարին հրատարակված գիտական հոդված
@hy
2015年の論文
@ja
2015年論文
@yue
2015年論文
@zh-hant
2015年論文
@zh-hk
2015年論文
@zh-mo
2015年論文
@zh-tw
2015年论文
@wuu
name
Global mRNA selection mechanisms for translation initiation.
@ast
Global mRNA selection mechanisms for translation initiation.
@en
Global mRNA selection mechanisms for translation initiation.
@nl
type
label
Global mRNA selection mechanisms for translation initiation.
@ast
Global mRNA selection mechanisms for translation initiation.
@en
Global mRNA selection mechanisms for translation initiation.
@nl
prefLabel
Global mRNA selection mechanisms for translation initiation.
@ast
Global mRNA selection mechanisms for translation initiation.
@en
Global mRNA selection mechanisms for translation initiation.
@nl
P2093
P2860
P50
P1433
P1476
Global mRNA selection mechanisms for translation initiation
@en
P2093
Christopher J Kershaw
Lydia M Castelli
Paul F G Sims
Sarah S Mohammad-Qureshi
William Rowe
P2860
P2888
P356
10.1186/S13059-014-0559-Z
P577
2015-01-05T00:00:00Z
P5875
P6179
1037202435