Post-GWAS functional analysis identifies CUX1 as a regulator of p16INK4a and cellular senescence

Author:

Jiang Danli,Sun Wei,Wu Ting,Zou Meijuan,Vasamsetti Sathish Babu,Zhang Xiaoyu,Zhao Yihan,Phillippi Julie A.,Sawalha Amr H.,Tavakoli Sina,Dutta Partha,Florentin Jonathan,Chan Stephen Y.,Tollison Tammy S.ORCID,Di Wu ORCID,Cui Jing,Huntress Ian,Peng Xinxia,Finkel TorenORCID,Li GangORCID

Abstract

AbstractAccumulation of senescent cells with age is an important driver of aging and age-related diseases. However, the mechanisms and signaling pathways that regulate senescence remain elusive. In this report, we performed post-genome-wide association studies (GWAS) functional studies on the CDKN2A/B locus, a locus known to be associated with multiple age-related diseases and overall human lifespan. We demonstrate that transcription factor CUX1 (Cut-Like Homeobox 1) specifically binds to an atherosclerosis-associated functional single-nucleotide polymorphism (fSNP) (rs1537371) within the locus and regulates the CDKN2A/B-encoded proteins p14ARF, p15INK4b and p16INK4a and the antisense noncoding RNA in the CDK4 (INK4) locus (ANRIL) in endothelial cells (ECs). Endothelial CUX1 expression correlates with telomeric length and is induced by both DNA-damaging agents and oxidative stress. Moreover, induction of CUX1 expression triggers both replicative and stress-induced senescence via activation of p16INK4a expression. Thus, our studies identify CUX1 as a regulator of p16INK4a-dependent endothelial senescence and a potential therapeutic target for atherosclerosis and other age-related diseases.

Funder

Pitt | Medical Center, University of Pittsburgh

North Carolina State University

UNC | University of North Carolina at Chapel Hill

Brigham and Women’s Hospital

U.S. Department of Health & Human Services | NIH | National Institute on Aging

Publisher

Springer Science and Business Media LLC

Subject

Neuroscience (miscellaneous),Geriatrics and Gerontology,Aging

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