The chromatin remodelling complex WSTF-SNF2h interacts with nuclear myosin 1 and has a role in RNA polymerase I transcription
about
FACT facilitates chromatin transcription by RNA polymerases I and IIINuclear myosin II regulates the assembly of preinitiation complex for ICAM-1 gene transcriptionMammalian Sir2 homolog SIRT7 is an activator of RNA polymerase I transcriptionNuclear actin and actin-binding proteins in the regulation of transcription and gene expressionFunctional proteomics establishes the interaction of SIRT7 with chromatin remodeling complexes and expands its role in regulation of RNA polymerase I transcriptionBasic mechanisms in RNA polymerase I transcription of the ribosomal RNA genesNuclear myosin 1c facilitates the chromatin modifications required to activate rRNA gene transcription and cell cycle progressionUBF levels determine the number of active ribosomal RNA genes in mammalsLoss of WSTF results in spontaneous fluctuations of heterochromatin formation and resolution, combined with substantial changes to gene expression.Divergent human remodeling complexes remove nucleosomes from strong positioning sequences.Nuclear functions of actin.The CCCTC-binding factor (CTCF) of Drosophila contributes to the regulation of the ribosomal DNA and nucleolar stability.The chromatin remodelling complex B-WICH changes the chromatin structure and recruits histone acetyl-transferases to active rRNA genes.The WSTF-ISWI chromatin remodeling complex transiently associates with the human inactive X chromosome during late S-phase prior to BRCA1 and γ-H2AXMouse nuclear myosin I knock-out shows interchangeability and redundancy of myosin isoforms in the cell nucleusAnalysis of human protein replacement stable cell lines established using snoMEN-PR vectorA genome-wide screen for modifiers of transgene variegation identifies genes with critical roles in developmentTissue specific expression of myosin IC isoformsTbISWI regulates multiple polymerase I (Pol I)-transcribed loci and is present at Pol II transcription boundaries in Trypanosoma brucei.Glycogen synthase kinase (GSK) 3β phosphorylates and protects nuclear myosin 1c from proteasome-mediated degradation to activate rDNA transcription in early G1 cells.Cooperative Action of Cdk1/cyclin B and SIRT1 Is Required for Mitotic Repression of rRNA Synthesis.Nuclear myosin 1 contributes to a chromatin landscape compatible with RNA polymerase II transcription activation.Wnt5a Signals through DVL1 to Repress Ribosomal DNA Transcription by RNA Polymerase I.Functional proteomics establishes the interaction of SIRT7 with chromatin remodeling complexes and expands its role in regulation of RNA polymerase I transcription.Analysis of histone modifications at human ribosomal DNA in liver cancer cellAlu element-containing RNAs maintain nucleolar structure and function.As functional nuclear actin comes into view, is it globular, filamentous, or both?BAZ1B in Nucleus Accumbens Regulates Reward-Related Behaviors in Response to Distinct Emotional Stimuli.Myosin-I molecular motors at a glanceStructure and function of ribosomal RNA gene chromatin.Mechanisms of nuclear actin in chromatin-remodeling complexes.WSTF does it all: a multifunctional protein in transcription, repair, and replication.Actin-related proteins localized in the nucleus: from discovery to novel roles in nuclear organization.Nuclear actin and lamins in viral infections.Co-transcriptional nuclear actin dynamics.Transcriptional regulation and nuclear reprogramming: roles of nuclear actin and actin-binding proteins.Transcription factors that influence RNA polymerases I and II: To what extent is mechanism of action conserved?Rapid chromosome territory relocation by nuclear motor activity in response to serum removal in primary human fibroblastsNuclear myosin I acts in concert with polymeric actin to drive RNA polymerase I transcription.Nucleocytoplasmic shuttling of cytoskeletal proteins: molecular mechanism and biological significance.
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P2860
The chromatin remodelling complex WSTF-SNF2h interacts with nuclear myosin 1 and has a role in RNA polymerase I transcription
description
2006 nî lūn-bûn
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2006 թուականի Մայիսին հրատարակուած գիտական յօդուած
@hyw
2006 թվականի մայիսին հրատարակված գիտական հոդված
@hy
2006年の論文
@ja
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
The chromatin remodelling comp ...... RNA polymerase I transcription
@ast
The chromatin remodelling comp ...... RNA polymerase I transcription
@en
The chromatin remodelling comp ...... RNA polymerase I transcription
@en-gb
The chromatin remodelling comp ...... RNA polymerase I transcription
@nl
type
label
The chromatin remodelling comp ...... RNA polymerase I transcription
@ast
The chromatin remodelling comp ...... RNA polymerase I transcription
@en
The chromatin remodelling comp ...... RNA polymerase I transcription
@en-gb
The chromatin remodelling comp ...... RNA polymerase I transcription
@nl
prefLabel
The chromatin remodelling comp ...... RNA polymerase I transcription
@ast
The chromatin remodelling comp ...... RNA polymerase I transcription
@en
The chromatin remodelling comp ...... RNA polymerase I transcription
@en-gb
The chromatin remodelling comp ...... RNA polymerase I transcription
@nl
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P2860
P50
P3181
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The chromatin remodelling comp ...... RNA polymerase I transcription
@en
P2093
Ann-Kristin Ostlund Farrants
Erica Cavellán
Georg Reimer
Johan Thyberg
Nathalie Fomproix
Piergiorgio Percipalle
Ulrich Scheer
P2860
P304
P3181
P356
10.1038/SJ.EMBOR.7400657
P407
P577
2006-05-01T00:00:00Z