Nucleosome eviction along with H3K9ac deposition enhances Sox2 binding during human neuroectodermal commitment

摘要

Neuroectoderm is an important neural precursor. However, chromatin remodeling and its epigenetic regulatory roles during the differentiation of human neuroectodermal cells (hNECs) from human embryonic stem cells (hESCs) remain largely unexplored. Here, we obtained hNECs through directed differentiation from hESCs, and determined chromatin states in the two cell types. Upon differentiation, H2A.Z-mediated nucleosome depletion leads to an open chromatin structure in promoters and upregulates expression of neuroectodermal genes. Increase in H3K9ac signals and decrease in H3K27me3 signals in promoters result in an active chromatin state and activate neuroectodermal genes. Conversely, decrease in H3K9ac signals and increase in H3K27me3 signals in promoters repress pluripotency genes. Moreover, H3K9ac signals facilitate the pluripotency factor Sox2 binding to target sites unique to hNECs. Knockdown of the acetyltransferase Kat2b erases H3K9ac signals, disrupts Sox2 binding, and fails the differentiation. Our results demonstrate a hierarchy of epigenetic regulation of gene expression during the differentiation of hNECs from hESCs through chromatin remodeling.

出版物
CELL DEATH AND DIFFERENTIATION
杜艳华
杜艳华
2011级硕士,2013年春转博,2017年6月毕业,现为上海市免疫学研究所副研究员
刘镇萍
刘镇萍
2013级硕士,2016年6月毕业
曹鑫恺
曹鑫恺
2010级硕士,2013年3月毕业
陈啸龙
陈啸龙
2012级直博生,2018年12月毕业,现为上海交通大学医学院附属上海儿童医学中心PI
张小白
张小白
硕士生导师
江赐忠
江赐忠
博士生导师;PI
下一页
上一页

相关