MedicineBiology

S. Zekavat, Vanesa Viana-Huete, N. Matesanz, Saman Doroodgar Jorshery, M. Zuriaga, M. Uddin, M. Trinder, K. Paruchuri, V. Zorita, Alba Ferrer-Pérez, M. Amorós-Pérez, P. Kunderfranco, R. Carriero, C. Greco, Alejandra Aroca-Crevillén, Andrés Hidalgo, S. Damrauer, C. Ballantyne, A. Niroula, C. Gibson, J. Pirruccello, G. Griffin, B. Ebert, P. Libby, V. Fuster, Hongyu Zhao, M. Ghassemi, P. Natarajan, A. Bick, J. Fuster, D. Klarin

2023.1.16Nature Cardiovascular Research

DOI: 10.1038/s44161-022-00206-6

tlooto Summary

The role of CHIP is highlighted as a broad driver of atherosclerosis across the entire arterial system beyond the coronary arteries and genetic and experimental support for a direct causal contribution of TP53-mutant CHIP to Atherosclerosis is provided.

Abstract

Somatic mutations in blood indicative of clonal hematopoiesis of indeterminate potential (CHIP) are associated with an increased risk of hematologic malignancy, coronary artery disease and all-cause mortality. Here we analyze the relation between CHIP status and incident peripheral artery disease (PAD) and atherosclerosis, using whole-exome sequencing and clinical data from the UK Biobank and the Mass General Brigham Biobank. CHIP associated with incident PAD and atherosclerotic disease across multiple beds, with increased risk among individuals with CHIP driven by mutation in DNA damage repair (DDR) genes, such as TP53 and PPM1D. To model the effects of DDR-induced CHIP on atherosclerosis, we used a competitive bone marrow transplantation strategy and generated atherosclerosis-prone Ldlr−/− chimeric mice carrying 20% p53-deficient hematopoietic cells. The chimeric mice were analyzed 13 weeks after grafting and showed increased aortic plaque size and accumulation of macrophages within the plaque, driven by increased proliferation of p53-deficient plaque macrophages. In summary, our findings highlight the role of CHIP as a broad driver of atherosclerosis across the entire arterial system beyond the coronary arteries and provide genetic and experimental support for a direct causal contribution of TP53-mutant CHIP to atherosclerosis. Zekavat, Matesanz, Viana-Huete et al. show an increased risk of peripheral artery disease and atherosclerosis in different vascular beds in patients with clonal hematopoiesis of indeterminate potential (CHIP) caused by mutations in DNA damage repair genes, such as TP53. Validations in a mouse model support the causal contribution of TP53-mutant CHIP to atherosclerosis.

Citation format

ZEKAVAT, S., et al. Tp53-mediated clonal hematopoiesis confers increased risk for incident atherosclerotic disease. Nature Cardiovascular Research, 2023, 2: 144–158.