TEAD2 initiates ground-state pluripotency by mediating chromatin looping

Author:

Guo Rong,Dong Xiaotao,Chen Feng,Ji Tianrong,He Qiannan,Zhang JieORCID,Sheng YingliangORCID,Liu Yanjiang,Yang Shengxiong,Liang Weifang,Song Yawei,Fang KeORCID,Zhang Lingling,Hu GongchengORCID,Yao HongjieORCID

Abstract

AbstractThe transition of mouse embryonic stem cells (ESCs) between serum/LIF and 2i(MEK and GSK3 kinase inhibitor)/LIF culture conditions serves as a valuable model for exploring the mechanisms underlying ground and confused pluripotent states. Regulatory networks comprising core and ancillary pluripotency factors drive the gene expression programs defining stable naïve pluripotency. In our study, we systematically screened factors essential for ESC pluripotency, identifying TEAD2 as an ancillary factor maintaining ground-state pluripotency in 2i/LIF ESCs and facilitating the transition from serum/LIF to 2i/LIF ESCs. TEAD2 exhibits increased binding to chromatin in 2i/LIF ESCs, targeting active chromatin regions to regulate the expression of 2i-specific genes. In addition, TEAD2 facilitates the expression of 2i-specific genes by mediating enhancer-promoter interactions during the serum/LIF to 2i/LIF transition. Notably, deletion of Tead2 results in reduction of a specific set of enhancer-promoter interactions without significantly affecting binding of chromatin architecture proteins, CCCTC-binding factor (CTCF), and Yin Yang 1 (YY1). In summary, our findings highlight a novel prominent role of TEAD2 in orchestrating higher-order chromatin structures of 2i-specific genes to sustain ground-state pluripotency.

Funder

MOST | NSFC | National Outstanding Youth Science Fund Project of National Natural Science Foundation of China

National Natural Science Foundation of China-Guangdong Joint Fund

Guangdong Basic and Applied Basic Research Foundation

China Postdoctoral Science Foundation

广东省人民政府 | National Natural Science Foundation of China-Guangdong Joint Fund

National Key R&D Program of China

Funding by Science and Technology Projects in Guangzhou, China

Guangzhou Key R&D Program

Major Project of Guangzhou National Laboratory

Publisher

Springer Science and Business Media LLC

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