RNA polymerase II elongation factors Spt4p and Spt5p play roles in transcription elongation by RNA polymerase I and rRNA processing
about
Network compression as a quality measure for protein interaction networksFACT facilitates chromatin transcription by RNA polymerases I and IIIBasic mechanisms in RNA polymerase I transcription of the ribosomal RNA genesThe Spt4-Spt5 complex: a multi-faceted regulator of transcription elongationDirect Characterization of Transcription Elongation by RNA Polymerase ITwo Structurally Independent Domains of E. coli NusG Create Regulatory Plasticity via Distinct Interactions with RNA Polymerase and RegulatorsSpt4/5 stimulates transcription elongation through the RNA polymerase clamp coiled-coil motifAn α Helix to β Barrel Domain Switch Transforms the Transcription Factor RfaH into a Translation FactorThe Paf1 complex is required for efficient transcription elongation by RNA polymerase IThe transcription elongation factor Spt5 influences transcription by RNA polymerase I positively and negatively.Rpa43 and its partners in the yeast RNA polymerase I transcription complex.The Transcription Factor THO Promotes Transcription Initiation and Elongation by RNA Polymerase I.A functional interface at the rDNA connects rRNA synthesis, pre-rRNA processing and nucleolar surveillance in budding yeastThe SWI/SNF chromatin remodeling complex influences transcription by RNA polymerase I in Saccharomyces cerevisiaeYeast transcription elongation factor Spt5 associates with RNA polymerase I and RNA polymerase II directly.Transcription of multiple yeast ribosomal DNA genes requires targeting of UAF to the promoter by Uaf30.Assembly of regulatory factors on rRNA and ribosomal protein genes in Saccharomyces cerevisiae.Hmo1 is required for TOR-dependent regulation of ribosomal protein gene transcriptionCcr4-not regulates RNA polymerase I transcription and couples nutrient signaling to the control of ribosomal RNA biogenesisHistidine methylation of yeast ribosomal protein Rpl3p is required for proper 60S subunit assembly.Rpd3- and spt16-mediated nucleosome assembly and transcriptional regulation on yeast ribosomal DNA genesVisual analysis of the yeast 5S rRNA gene transcriptome: regulation and role of La proteinTranscription elongation by RNA polymerase I is linked to efficient rRNA processing and ribosome assembly.MicroRNAs, the epigenetic memory and climatic adaptation in Norway spruce.A dual interface determines the recognition of RNA polymerase II by RNA capping enzyme.Functional analysis of Thermus thermophilus transcription factor NusGThe β subunit gate loop is required for RNA polymerase modification by RfaH and NusG.The initiation factor TFE and the elongation factor Spt4/5 compete for the RNAP clamp during transcription initiation and elongationRNA polymerase I activity is regulated at multiple steps in the transcription cycle: recent insights into factors that influence transcription elongation.The Roles of the Paf1 Complex and Associated Histone Modifications in Regulating Gene ExpressionThe spt5 C-terminal region recruits yeast 3' RNA cleavage factor I.Regulation of ribosomal RNA production by RNA polymerase I: does elongation come first?P-TEFb Kinase Activity Is Essential for Global Transcription, Resumption of Meiosis and Embryonic Genome Activation in Pig.Chromatin-associated genes protect the yeast genome from Ty1 insertional mutagenesisStructure and function of ribosomal RNA gene chromatin.Characterization of the Schizosaccharomyces pombe Spt5-Spt4 complex.Core structure of the yeast spt4-spt5 complex: a conserved module for regulation of transcription elongation.Structure-function analysis of Hmo1 unveils an ancestral organization of HMG-Box factors involved in ribosomal DNA transcription from yeast to human.UBF complexes with phosphatidylinositol 4,5-bisphosphate in nucleolar organizer regions regardless of ongoing RNA polymerase I activity.Transcription factors that influence RNA polymerases I and II: To what extent is mechanism of action conserved?
P2860
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P2860
RNA polymerase II elongation factors Spt4p and Spt5p play roles in transcription elongation by RNA polymerase I and rRNA processing
description
2006 nî lūn-bûn
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2006 թուականի Օգոստոսին հրատարակուած գիտական յօդուած
@hyw
2006 թվականի օգոստոսին հրատարակված գիտական հոդված
@hy
2006年の論文
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2006年学术文章
@wuu
2006年学术文章
@zh-cn
2006年学术文章
@zh-hans
2006年学术文章
@zh-my
2006年学术文章
@zh-sg
2006年學術文章
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name
RNA polymerase II elongation f ...... lymerase I and rRNA processing
@ast
RNA polymerase II elongation f ...... lymerase I and rRNA processing
@en
RNA polymerase II elongation f ...... ymerase I and rRNA processing.
@nl
type
label
RNA polymerase II elongation f ...... lymerase I and rRNA processing
@ast
RNA polymerase II elongation f ...... lymerase I and rRNA processing
@en
RNA polymerase II elongation f ...... ymerase I and rRNA processing.
@nl
prefLabel
RNA polymerase II elongation f ...... lymerase I and rRNA processing
@ast
RNA polymerase II elongation f ...... lymerase I and rRNA processing
@en
RNA polymerase II elongation f ...... ymerase I and rRNA processing.
@nl
P2093
P2860
P3181
P356
P1476
RNA polymerase II elongation f ...... lymerase I and rRNA processing
@en
P2093
A O Bailey
D A Schneider
S L French
Y N Osheim
P2860
P304
12707-12712
P3181
P356
10.1073/PNAS.0605686103
P407
P577
2006-08-14T00:00:00Z