| Literature DB >> 26859354 |
Liguo Zhang1, Xuelian He1, Lei Liu2, Minqing Jiang1, Chuntao Zhao1, Haibo Wang1, Danyang He3, Tao Zheng2, Xianyao Zhou2, Aishlin Hassan1, Zhixing Ma1, Mei Xin1, Zheng Sun4, Mitchell A Lazar4, Steven A Goldman5, Eric N Olson6, Q Richard Lu7.
Abstract
Establishment and maintenance of CNS glial cell identity ensures proper brain development and function, yet the epigenetic mechanisms underlying glial fate control remain poorly understood. Here, we show that the histone deacetylase Hdac3 controls oligodendrocyte-specification gene Olig2 expression and functions as a molecular switch for oligodendrocyte and astrocyte lineage determination. Hdac3 ablation leads to a significant increase of astrocytes with a concomitant loss of oligodendrocytes. Lineage tracing indicates that the ectopic astrocytes originate from oligodendrocyte progenitors. Genome-wide occupancy analysis reveals that Hdac3 interacts with p300 to activate oligodendroglial lineage-specific genes, while suppressing astroglial differentiation genes including NFIA. Furthermore, we find that Hdac3 modulates the acetylation state of Stat3 and competes with Stat3 for p300 binding to antagonize astrogliogenesis. Thus, our data suggest that Hdac3 cooperates with p300 to prime and maintain oligodendrocyte identity while inhibiting NFIA and Stat3-mediated astrogliogenesis, and thereby regulates phenotypic commitment at the point of oligodendrocyte-astrocytic fate decision.Entities:
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Year: 2016 PMID: 26859354 PMCID: PMC4750051 DOI: 10.1016/j.devcel.2016.01.002
Source DB: PubMed Journal: Dev Cell ISSN: 1534-5807 Impact factor: 12.270