Ontology highlight
ABSTRACT: Background
Cellular differentiation and reprogramming are accompanied by changes in replication timing and 3D organization of large-scale (400 to 800 Kb) chromosomal domains ('replication domains'), but few gene products have been identified whose disruption affects these properties.Results
Here we show that deletion of esBAF chromatin-remodeling complex components BAF250a and Brg1, but not BAF53a, disrupts replication timing at specific replication domains. Also, BAF250a-deficient fibroblasts reprogrammed to a pluripotency-like state failed to reprogram replication timing in many of these same domains. About half of the replication domains affected by Brg1 loss were also affected by BAF250a loss, but a much larger set of domains was affected by BAF250a loss. esBAF binding in the affected replication domains was dependent upon BAF250a but, most affected domains did not contain genes whose transcription was affected by loss of esBAF.Conclusions
Loss of specific esBAF complex subunits alters replication timing of select replication domains in pluripotent cells.
SUBMITTER: Takebayashi S
PROVIDER: S-EPMC3895691 | biostudies-literature | 2013 Dec
REPOSITORIES: biostudies-literature
Takebayashi Shin-Ichiro S Lei Ienglam I Ryba Tyrone T Sasaki Takayo T Dileep Vishnu V Battaglia Dana D Gao Xiaolin X Fang Peng P Fan Yong Y Esteban Miguel A MA Tang Jiong J Crabtree Gerald R GR Wang Zhong Z Gilbert David M DM
Epigenetics & chromatin 20131213 1
<h4>Background</h4>Cellular differentiation and reprogramming are accompanied by changes in replication timing and 3D organization of large-scale (400 to 800 Kb) chromosomal domains ('replication domains'), but few gene products have been identified whose disruption affects these properties.<h4>Results</h4>Here we show that deletion of esBAF chromatin-remodeling complex components BAF250a and Brg1, but not BAF53a, disrupts replication timing at specific replication domains. Also, BAF250a-deficie ...[more]