Recruitment of transcription factor ETS1 to activated accessible regions promotes the transcriptional program of cilia genes

Author:

Zhang Donghui1ORCID,Zhang Chong1,Zhu Yanmei1,Xie Haixia2,Yue Caifeng23,Li Mingfeng1,Wei Wenlu1,Peng Yu4,Yin Guibin5,Guo Yunmiao1,Guan Yiting1ORCID

Affiliation:

1. Zhanjiang Institute of Clinical Medicine, Central People's Hospital of Zhanjiang, Guangdong Medical University Zhanjiang Central Hospital , Zhanjiang 524045, PR China

2. Precision Clinical Laboratory, Central People's Hospital of Zhanjiang, Guangdong Medical University Zhanjiang Central Hospital , Zhanjiang 524045, PR China

3. Department of Laboratory Medicine, Central People's Hospital of Zhanjiang, Guangdong Medical University Zhanjiang Central Hospital , Zhanjiang 524045, PR China

4. Pediatric Intensive Care Unit Central, People's Hospital of Zhanjiang, Guangdong Medical University Zhanjiang Central Hospital , Zhanjiang 524045, PR China

5. Department of Orthopedics, Central People's Hospital of Zhanjiang, Guangdong Medical University Zhanjiang Central Hospital , Zhanjiang 524045, PR China

Abstract

Abstract Defects in cilia genes, which are critical for cilia formation and function, can cause complicated ciliopathy syndromes involving multiple organs and tissues; however, the underlying regulatory mechanisms of the networks of cilia genes in ciliopathies remain enigmatic. Herein, we have uncovered the genome-wide redistribution of accessible chromatin regions and extensive alterations of expression of cilia genes during Ellis–van Creveld syndrome (EVC) ciliopathy pathogenesis. Mechanistically, the distinct EVC ciliopathy-activated accessible regions (CAAs) are shown to positively regulate robust changes in flanking cilia genes, which are a key requirement for cilia transcription in response to developmental signals. Moreover, a single transcription factor, ETS1, can be recruited to CAAs, leading to prominent chromatin accessibility reconstruction in EVC ciliopathy patients. In zebrafish, the collapse of CAAs driven by ets1 suppression subsequently causes defective cilia proteins, resulting in body curvature and pericardial oedema. Our results depict a dynamic landscape of chromatin accessibility in EVC ciliopathy patients, and uncover an insightful role for ETS1 in controlling the global transcriptional program of cilia genes by reprogramming the widespread chromatin state.

Funder

Guangdong Basic and Applied Basic Research Foundation

National Natural Science Foundation of China

Central People's Hospital of Zhanjiang Startup Project of Doctor Scientific Research

Zhanjiang Science and Technology

Publisher

Oxford University Press (OUP)

Subject

Genetics

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