Genomics

Dataset Information

0

Bromodomain-dependent stage-specific male genome programming by Brdt [ChIP-Seq]


ABSTRACT: Male germ cell differentiation is a highly regulated multistep process initiated by the commitment of progenitor cells into meiosis and characterized by major chromatin reorganizations in haploid spermatids. We report here that a single member of the double bromodomain BET factors, Brdt, is a master regulator of both meiotic divisions and post-meiotic genome repackaging. Upon its activation at the onset of meiosis, Brdt drives and determines the developmental timing of a testis-specific gene expression program. In meiotic cells, Brdt initiates a genuine histone acetylation-guided programming of the genome by activating essential meiotic genes and repressing a “progenitor cells” gene expression program, while “priming” a post-meiotic gene group for further activation. At post-meiotic stages, a global chromatin hyperacetylation gives the signal for Brdt’s first bromodomain to direct the genome-wide replacement of histones by transition proteins. Brdt is therefore a unique and essential regulator of male germ cell differentiation, which, by using various domains in a developmentally controlled manner, first drives a specific spermatogenic gene expression program, and later controls the tight packaging of the male genome.

ORGANISM(S): Mus musculus

PROVIDER: GSE39908 | GEO | 2012/08/30

SECONDARY ACCESSION(S): PRJNA172754

REPOSITORIES: GEO

Dataset's files

Source:
Action DRS
Other
Items per page:
1 - 1 of 1

Similar Datasets

2012-08-30 | E-GEOD-39908 | biostudies-arrayexpress
2012-08-30 | E-GEOD-39909 | biostudies-arrayexpress
2012-08-30 | GSE39909 | GEO
2018-10-02 | PXD008727 | Pride
2018-10-15 | GSE111931 | GEO
2020-07-28 | GSE136752 | GEO
2021-12-11 | GSE190525 | GEO
2012-08-30 | E-GEOD-39910 | biostudies-arrayexpress
2022-09-30 | GSE212117 | GEO
2022-09-30 | GSE212116 | GEO