Crystal structure of human Edc3 and its functional implications
about
Similar Modes of Interaction Enable Trailer Hitch and EDC3 To Associate with DCP1 and Me31B in Distinct Protein ComplexesDCP1 forms asymmetric trimers to assemble into active mRNA decapping complexes in metazoaIdentification of unknown protein function using metabolite cocktail screening.The structural basis of Edc3- and Scd6-mediated activation of the Dcp1:Dcp2 mRNA decapping complexStructure of the active form of Dcp1-Dcp2 decapping enzyme bound to m7GDP and its Edc3 activatorYeast Edc3 targets RPS28B mRNA for decapping by binding to a 3' untranslated region decay-inducing regulatory element.Decapping activators in Saccharomyces cerevisiae act by multiple mechanisms.Identification of the Rps28 binding motif from yeast Edc3 involved in the autoregulatory feedback loop controlling RPS28B mRNA decayEdc3 function in yeast and mammals is modulated by interaction with NAD-related compoundsInteractions between Upf1 and the decapping factors Edc3 and Pat1 in Saccharomyces cerevisiae.A link between mir-100 and FRAP1/mTOR in clear cell ovarian cancerA pathway for repair of NAD(P)H in plants.Identification and analysis of the interaction between Edc3 and Dcp2 in Saccharomyces cerevisiaeGlobal phosphoproteomics identifies a major role for AKT and 14-3-3 in regulating EDC3Cytoplasmic mRNP granules at a glanceFormation and Maturation of Phase-Separated Liquid Droplets by RNA-Binding Proteins.P-bodies and stress granules: possible roles in the control of translation and mRNA degradation.Paraspeckles: nuclear bodies built on long noncoding RNAStructural and functional insights into eukaryotic mRNA decapping.Structural and functional control of the eukaryotic mRNA decapping machinery.The role of disordered protein regions in the assembly of decapping complexes and RNP granules.Integrative bioinformatics analysis characterizing the role of EDC3 in mRNA decay and its association to intellectual disability.Arabidopsis decapping 5 is required for mRNA decapping, P-body formation, and translational repression during postembryonic development.
P2860
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P2860
Crystal structure of human Edc3 and its functional implications
description
2008 nî lūn-bûn
@nan
2008 թուականի Հոկտեմբերին հրատարակուած գիտական յօդուած
@hyw
2008 թվականի հոտեմբերին հրատարակված գիտական հոդված
@hy
2008年の論文
@ja
2008年論文
@yue
2008年論文
@zh-hant
2008年論文
@zh-hk
2008年論文
@zh-mo
2008年論文
@zh-tw
2008年论文
@wuu
name
Crystal structure of human Edc3 and its functional implications
@ast
Crystal structure of human Edc3 and its functional implications
@en
Crystal structure of human Edc3 and its functional implications
@en-gb
Crystal structure of human Edc3 and its functional implications
@nl
type
label
Crystal structure of human Edc3 and its functional implications
@ast
Crystal structure of human Edc3 and its functional implications
@en
Crystal structure of human Edc3 and its functional implications
@en-gb
Crystal structure of human Edc3 and its functional implications
@nl
altLabel
Crystal Structure of Human Edc3 and Its Functional Implications
@en
prefLabel
Crystal structure of human Edc3 and its functional implications
@ast
Crystal structure of human Edc3 and its functional implications
@en
Crystal structure of human Edc3 and its functional implications
@en-gb
Crystal structure of human Edc3 and its functional implications
@nl
P2093
P2860
P921
P356
P1476
Crystal structure of human Edc3 and its functional implications
@en
P2093
Carolyn J Decker
Haiwei Song
Meipei She
Roy Parker
Sharon H M Ling
P2860
P304
P356
10.1128/MCB.00761-08
P407
P577
2008-10-01T00:00:00Z