SWI/SNF complexes, chromatin remodeling and skeletal myogenesis: it's time to exchange!
about
Epigenetic mechanisms in cardiac development and diseaseSWI/SNF-directed stem cell lineage specification: dynamic composition regulates specific stages of skeletal myogenesisTranscriptional control in cardiac progenitors: Tbx1 interacts with the BAF chromatin remodeling complex and regulates Wnt5aSignal-dependent incorporation of MyoD-BAF60c into Brg1-based SWI/SNF chromatin-remodelling complexMyoD regulates p57kip2 expression by interacting with a distant cis-element and modifying a higher order chromatin structureThe methyltransferase SMYD3 mediates the recruitment of transcriptional cofactors at the myostatin and c-Met genes and regulates skeletal muscle atrophyTherapeutic advances for the tumors associated with neurofibromatosis type 1, type 2, and schwannomatosisNon-viral expression of mouse Oct4, Sox2, and Klf4 transcription factors efficiently reprograms tadpole muscle fibers in vivo.Direct lineage conversions: unnatural but useful?The SWI/SNF subunit/tumor suppressor BAF47/INI1 is essential in cell cycle arrest upon skeletal muscle terminal differentiation.Recruitment of SWI/SNF complex is required for transcriptional activation of the SLC11A1 gene during macrophage differentiation of HL-60 cellsSculpting chromatin beyond the double helix: epigenetic control of skeletal myogenesis.Lysine methyltransferase G9a methylates the transcription factor MyoD and regulates skeletal muscle differentiationBrahma is required for cell cycle arrest and late muscle gene expression during skeletal myogenesisMethylation muscles into transcription factor silencing.Functional studies of the Ciona intestinalis myogenic regulatory factor reveal conserved features of chordate myogenesisThe Scaffold attachment factor b1 (Safb1) regulates myogenic differentiation by facilitating the transition of myogenic gene chromatin from a repressed to an activated state.Teashirt-3, a novel regulator of muscle differentiation, associates with BRG1-associated factor 57 (BAF57) to inhibit myogenin gene expressionAkirin: a context-dependent link between transcription and chromatin remodeling.The BAF60c-MyoD complex poises chromatin for rapid transcription.Coordinate Nodal and BMP inhibition directs Baf60c-dependent cardiomyocyte commitment.Recovery from impaired muscle growth arises from prolonged postnatal accretion of myonuclei in Atrx mutant mice.Identification of MyoD Interactome Using Tandem Affinity Purification Coupled to Mass Spectrometry.Update from the 2011 International Schwannomatosis Workshop: From genetics to diagnostic criteria.
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P2860
SWI/SNF complexes, chromatin remodeling and skeletal myogenesis: it's time to exchange!
description
article científic
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article scientifique
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articolo scientifico
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artigo científico
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bilimsel makale
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scientific article published on 27 May 2010
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
SWI/SNF complexes, chromatin remodeling and skeletal myogenesis: it's time to exchange!
@en
SWI/SNF complexes, chromatin remodeling and skeletal myogenesis: it's time to exchange!
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type
label
SWI/SNF complexes, chromatin remodeling and skeletal myogenesis: it's time to exchange!
@en
SWI/SNF complexes, chromatin remodeling and skeletal myogenesis: it's time to exchange!
@nl
prefLabel
SWI/SNF complexes, chromatin remodeling and skeletal myogenesis: it's time to exchange!
@en
SWI/SNF complexes, chromatin remodeling and skeletal myogenesis: it's time to exchange!
@nl
P2860
P1476
SWI/SNF complexes, chromatin remodeling and skeletal myogenesis: it's time to exchange!
@en
P2093
Sonia Albini
P2860
P304
P356
10.1016/J.YEXCR.2010.05.023
P407
P577
2010-05-27T00:00:00Z