Integrated multi-omics approach revealed cellular senescence landscape

Author:

Song Qiao1,Hou Yuli1,Zhang Yiyin2,Liu Jing1,Wang Yaqi1,Fu Jingxuan1,Zhang Chi1,Cao Min3,Cui Yuting1,Zhang Xiaomin1,Wang Xiaoling1,Zhang Jingjing1,Liu Congcong1,Zhang Yingzhen1,Wang Peichang1ORCID

Affiliation:

1. Department of Clinical laboratory, Xuanwu Hospital, National Clinical Research Center for Geriatric Diseases, Capital Medical University , Beijing 100053, PR China

2. Shanghai Jiayin Biotechnology , Shanghai 200092, PR China

3. Department of Clinical Laboratory, Beijing Huairou Hospital , Beijing 101400, PR China

Abstract

Abstract Cellular senescence is a complex multifactorial biological phenomenon that plays essential roles in aging, and aging-related diseases. During this process, the senescent cells undergo gene expression altering and chromatin structure remodeling. However, studies on the epigenetic landscape of senescence using integrated multi-omics approaches are limited. In this research, we performed ATAC-seq, RNA-seq and ChIP-seq on different senescent types to reveal the landscape of senescence and identify the prime regulatory elements. We also obtained 34 key genes and deduced that NAT1, PBX1 and RRM2, which interacted with each other, could be the potential markers of aging and aging-related diseases. In summary, our work provides the landscape to study accessibility dynamics and transcriptional regulations in cellular senescence. The application of this technique in different types of senescence allows us to identify the regulatory elements responsible for the substantial regulation of transcription, providing the insights into molecular mechanisms of senescence.

Funder

National Natural Science Foundation of China

Beijing Sail Plan for Talents Development

Beijing Key Clinical Specialty

HUIZHI Talent Leadership Development Program of Xuanwu Hospital

Publisher

Oxford University Press (OUP)

Subject

Genetics

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