Telomere dysfunction activates YAP1 to drive tissue inflammation

Author:

Chakravarti Deepavali,Hu Baoli,Mao Xizeng,Rashid Asif,Li JiexiORCID,Li Jun,Liao Wen-tingORCID,Whitley Elizabeth M.,Dey PrasenjitORCID,Hou PingpingORCID,LaBella Kyle A.ORCID,Chang AndrewORCID,Wang Guocan,Spring Denise J.,Deng Pingna,Zhao Di,Liang XinORCID,Lan Zhengdao,Lin YiyunORCID,Sarkar Sharmistha,Terranova ChristopherORCID,Deribe Yonathan Lissanu,Blutt Sarah E.,Okhuysen PabloORCID,Zhang JianhuaORCID,Vilar EduardoORCID,Nielsen Ole HaagenORCID,Dupont Andrew,Younes MamounORCID,Patel Kalyani R.,Shroyer Noah F.,Rai Kunal,Estes Mary K.ORCID,Wang Y. Alan,Bertuch Alison A.,DePinho Ronald A.ORCID

Abstract

AbstractGermline telomere maintenance defects are associated with an increased incidence of inflammatory diseases in humans, yet whether and how telomere dysfunction causes inflammation are not known. Here, we show that telomere dysfunction drives pATM/c-ABL-mediated activation of the YAP1 transcription factor, up-regulating the major pro-inflammatory factor, pro-IL-18. The colonic microbiome stimulates cytosolic receptors activating caspase-1 which cleaves pro-IL-18 into mature IL-18, leading to recruitment of interferon (IFN)-γ-secreting T cells and intestinal inflammation. Correspondingly, patients with germline telomere maintenance defects exhibit DNA damage (γH2AX) signaling together with elevated YAP1 and IL-18 expression. In mice with telomere dysfunction, telomerase reactivation in the intestinal epithelium or pharmacological inhibition of ATM, YAP1, or caspase-1 as well as antibiotic treatment, dramatically reduces IL-18 and intestinal inflammation. Thus, telomere dysfunction-induced activation of the ATM-YAP1-pro-IL-18 pathway in epithelium is a key instigator of tissue inflammation.

Funder

U.S. Department of Health & Human Services | National Institutes of Health

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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