A block to mRNA nuclear export in S. cerevisiae leads to hyperadenylation of transcripts that accumulate at the site of transcription.
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A conserved CCCH-type zinc finger protein regulates mRNA nuclear adenylation and exportNucleophosmin deposition during mRNA 3' end processing influences poly(A) tail lengthProtein ligands mediate the CRM1-dependent export of HuR in response to heat shock.Poly(A)-binding proteins: multifunctional scaffolds for the post-transcriptional control of gene expressionDeterminants and implications of mRNA poly(A) tail size--does this protein make my tail look big?Stable mRNP formation and export require cotranscriptional recruitment of the mRNA export factors Yra1p and Sub2p by Hpr1pNab2p and the Thp1p-Sac3p complex functionally interact at the interface between transcription and mRNA metabolism.Swt1, a novel yeast protein, functions in transcription.General, rapid, and transcription-dependent fragmentation of nucleolar antigens in S. cerevisiae mRNA export mutantsDissecting mechanisms of nuclear mRNA surveillance in THO/sub2 complex mutants.Quality control of mRNA 3'-end processing is linked to the nuclear exosome.A nucleoporin, Nup60p, affects the nuclear and cytoplasmic localization of ASH1 mRNA in S. cerevisiae.Sus1, Sac3, and Thp1 mediate post-transcriptional tethering of active genes to the nuclear rim as well as to non-nascent mRNP.Yeast poly(A)-binding protein, Pab1, and PAN, a poly(A) nuclease complex recruited by Pab1, connect mRNA biogenesis to exportDual requirement for yeast hnRNP Nab2p in mRNA poly(A) tail length control and nuclear exportPosttranscriptional regulation of the RAD5 DNA repair gene by the Dun1 kinase and the Pan2-Pan3 poly(A)-nuclease complex contributes to survival of replication blocks.Gle2p is essential to induce adaptation of the export of bulk poly(A)+ mRNA to heat shock in Saccharomyces cerevisiae.The yeast Apq12 protein affects nucleocytoplasmic mRNA transport.Functional specificity of shuttling hnRNPs revealed by genome-wide analysis of their RNA binding profiles.Interactions between mRNA export commitment, 3'-end quality control, and nuclear degradationSplicing factor Sub2p is required for nuclear mRNA export through its interaction with Yra1p.Aberrant herpesvirus-induced polyadenylation correlates with cellular messenger RNA destruction.Kaposi's sarcoma-associated herpesvirus ORF57 protein binds and protects a nuclear noncoding RNA from cellular RNA decay pathways.An Rrp6-like protein positively regulates noncoding RNA levels and DNA methylation in Arabidopsis.Splice-site mutations cause Rrp6-mediated nuclear retention of the unspliced RNAs and transcriptional down-regulation of the splicing-defective genes.Loss of nuclear poly(A)-binding protein 1 causes defects in myogenesis and mRNA biogenesis.Meiotic long non-coding meiRNA accumulates as a dot at its genetic locus facilitated by Mmi1 and plays as a decoy to lure Mmi1.Myotonic dystrophies 1 and 2: complex diseases with complex mechanisms.A synthetic A tail rescues yeast nuclear accumulation of a ribozyme-terminated transcriptA viral nuclear noncoding RNA binds re-localized poly(A) binding protein and is required for late KSHV gene expression.Ubiquitin-mediated mRNP dynamics and surveillance prior to budding yeast mRNA exportThe nuclear pore complex and the DEAD box protein Rat8p/Dbp5p have nonessential features which appear to facilitate mRNA export following heat shock.Nuclear import of cytoplasmic poly(A) binding protein restricts gene expression via hyperadenylation and nuclear retention of mRNA.Nuclear export of mRNA.Transcription and nuclear transport of CAG/CTG trinucleotide repeats in yeast.Coupling of termination, 3' processing, and mRNA exportNXF1/p15 heterodimers are essential for mRNA nuclear export in DrosophilaSmall bristles, the Drosophila ortholog of NXF-1, is essential for mRNA export throughout developmentLocalization of nuclear retained mRNAs in Saccharomyces cerevisiae.Dramatically improved RNA in situ hybridization signals using LNA-modified probes
P2860
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P2860
A block to mRNA nuclear export in S. cerevisiae leads to hyperadenylation of transcripts that accumulate at the site of transcription.
description
2001 nî lūn-bûn
@nan
2001 թուականի Ապրիլին հրատարակուած գիտական յօդուած
@hyw
2001 թվականի ապրիլին հրատարակված գիտական հոդված
@hy
2001年の論文
@ja
2001年論文
@yue
2001年論文
@zh-hant
2001年論文
@zh-hk
2001年論文
@zh-mo
2001年論文
@zh-tw
2001年论文
@wuu
name
A block to mRNA nuclear export ...... at the site of transcription.
@ast
A block to mRNA nuclear export ...... at the site of transcription.
@en
type
label
A block to mRNA nuclear export ...... at the site of transcription.
@ast
A block to mRNA nuclear export ...... at the site of transcription.
@en
prefLabel
A block to mRNA nuclear export ...... at the site of transcription.
@ast
A block to mRNA nuclear export ...... at the site of transcription.
@en
P2093
P1433
P1476
A block to mRNA nuclear export ...... at the site of transcription.
@en
P2093
P304
P356
10.1016/S1097-2765(01)00232-5
P577
2001-04-01T00:00:00Z