Assembly of Snu114 into U5 snRNP requires Prp8 and a functional GTPase domain.
about
Crystal structure of the C-terminal domain of splicing factor Prp8 carrying retinitis pigmentosa mutantsStructural evidence for consecutive Hel308-like modules in the spliceosomal ATPase Brr2Prp8 retinitis pigmentosa mutants cause defects in the transition between the catalytic steps of splicing.Visualizing the splicing of single pre-mRNA molecules in whole cell extract.Interaction between RNA helicase ROOT INITIATION DEFECTIVE 1 and GAMETOPHYTIC FACTOR 1 is involved in female gametophyte development in Arabidopsis.Acetylation by the transcriptional coactivator Gcn5 plays a novel role in co-transcriptional spliceosome assembly.Comparative genomics RNAi screen identifies Eftud2 as a novel regulator of innate immunity.A quantitative, high-throughput reverse genetic screen reveals novel connections between Pre-mRNA splicing and 5' and 3' end transcript determinantsRegulation of toll-like receptor signaling by the SF3a mRNA splicing complex.Tudor staphylococcal nuclease (Tudor-SN) participates in small ribonucleoprotein (snRNP) assembly via interacting with symmetrically dimethylated Sm proteins.Functional roles of protein splicing factors.Single molecule analysis reveals reversible and irreversible steps during spliceosome activationThe EF-G-like GTPase Snu114p regulates spliceosome dynamics mediated by Brr2p, a DExD/H box ATPaseThe spliceosomal proteome: at the heart of the largest cellular ribonucleoprotein machine.Cryo-EM structure of the yeast U4/U6.U5 tri-snRNP at 3.7 Å resolution.The U5 snRNA internal loop 1 is a platform for Brr2, Snu114 and Prp8 protein binding during U5 snRNP assembly.An unanticipated early function of DEAD-box ATPase Prp28 during commitment to splicing is modulated by U5 snRNP protein Prp8.Structural and functional characterization of the N terminus of Schizosaccharomyces pombe Cwf10.In vitro reconstitution of yeast splicing with U4 snRNA reveals multiple roles for the 3' stem-loopAnalysis of synthetic lethality reveals genetic interactions between the GTPase Snu114p and snRNAs in the catalytic core of the Saccharomyces cerevisiae spliceosome.Mutations in the U5 snRNA result in altered splicing of subsets of pre-mRNAs and reduced stability of Prp8.
P2860
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P2860
Assembly of Snu114 into U5 snRNP requires Prp8 and a functional GTPase domain.
description
2006 nî lūn-bûn
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2006 թուականի Մարտին հրատարակուած գիտական յօդուած
@hyw
2006 թվականի մարտին հրատարակված գիտական հոդված
@hy
2006年の論文
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2006年論文
@yue
2006年論文
@zh-hant
2006年論文
@zh-hk
2006年論文
@zh-mo
2006年論文
@zh-tw
2006年论文
@wuu
name
Assembly of Snu114 into U5 snRNP requires Prp8 and a functional GTPase domain.
@ast
Assembly of Snu114 into U5 snRNP requires Prp8 and a functional GTPase domain.
@en
Assembly of Snu114 into U5 snRNP requires Prp8 and a functional GTPase domain.
@nl
type
label
Assembly of Snu114 into U5 snRNP requires Prp8 and a functional GTPase domain.
@ast
Assembly of Snu114 into U5 snRNP requires Prp8 and a functional GTPase domain.
@en
Assembly of Snu114 into U5 snRNP requires Prp8 and a functional GTPase domain.
@nl
prefLabel
Assembly of Snu114 into U5 snRNP requires Prp8 and a functional GTPase domain.
@ast
Assembly of Snu114 into U5 snRNP requires Prp8 and a functional GTPase domain.
@en
Assembly of Snu114 into U5 snRNP requires Prp8 and a functional GTPase domain.
@nl
P2860
P3181
P356
P1433
P1476
Assembly of Snu114 into U5 snRNP requires Prp8 and a functional GTPase domain.
@en
P2093
Christine Guthrie
Tamara J Brenner
P2860
P304
P3181
P356
10.1261/RNA.2319806
P407
P577
2006-03-15T00:00:00Z