BRD9-mediated control of the TGF-β/Activin/Nodal pathway regulates self-renewal and differentiation of human embryonic stem cells and progression of cancer cells

Author:

Wang Xuepeng1ORCID,Song Chengcheng2,Ye Ying3,Gu Yashi4,Li Xuemei5,Chen Peixin3,Leng Dongliang2,Xiao Jing2,Wu Hao3,Xie Sisi4,Liu Weiwei2,Zhao Qi2,Chen Di4ORCID,Chen Xi6ORCID,Wu Qiang17ORCID,Chen Guokai2ORCID,Zhang Wensheng358ORCID

Affiliation:

1. The State Key Laboratory of Quality Research in Chinese Medicine, Macau University of Science and Technology , Taipa , Macao SAR 999078,  China

2. Centre of Reproduction, Development and Aging, Faculty of Health Sciences, University of Macau , Taipa , Macao SAR 999078,  China

3. Medical College of Soochow University , Suzhou 215123 , China

4. Zhejiang University–University of Edinburgh Institute (ZJE), Zhejiang University School of Medicine, Zhejiang University , Haining  314400 , China

5. Peninsula Cancer Research Center, School of Basic Medical Sciences, Binzhou Medical University , Yantai  264003 , China

6. Department of Biology, Southern University of Science and Technology , Shenzhen 518000 , China

7. The Precision Regenerative Medicine Centre, Macau University of Science and Technology , Taipa, Macao SAR 999078, China

8. School of Life Sciences and Medicine, Shandong University of Technology , Zibo, 255049, China

Abstract

Abstract Bromodomain-containing protein 9 (BRD9) is a specific subunit of the non-canonical SWI/SNF (ncBAF) chromatin-remodeling complex, whose function in human embryonic stem cells (hESCs) remains unclear. Here, we demonstrate that impaired BRD9 function reduces the self-renewal capacity of hESCs and alters their differentiation potential. Specifically, BRD9 depletion inhibits meso-endoderm differentiation while promoting neural ectoderm differentiation. Notably, supplementation of NODAL, TGF-β, Activin A or WNT3A rescues the differentiation defects caused by BRD9 loss. Mechanistically, BRD9 forms a complex with BRD4, SMAD2/3, β-CATENIN and P300, which regulates the expression of pluripotency genes and the activity of TGF-β/Nodal/Activin and Wnt signaling pathways. This is achieved by regulating the deposition of H3K27ac on associated genes, thus maintaining and directing hESC differentiation. BRD9-mediated regulation of the TGF-β/Activin/Nodal pathway is also demonstrated in the development of pancreatic and breast cancer cells. In summary, our study highlights the crucial role of BRD9 in the regulation of hESC self-renewal and differentiation, as well as its participation in the progression of pancreatic and breast cancers.

Funder

Ministry of Science and Technology

National Natural Science Foundation of China

Macau Science and Technology Development Fund

University of Macau

Science and Technology Development Fund, Macau SAR

Ministry of Science and Technology National Key R&D

Publisher

Oxford University Press (OUP)

Subject

Genetics

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