Exome sequencing of 628,388 individuals identifies common and rare variant associations with clonal hematopoiesis phenotypes
Kessler, M. D.; Damask, A.; O'Keeffe, S.; Michael Van Meter, M.; Banerjee, N.; Semrau, S.; Li, D.; Watanabe, K.; Horowitz, J.; Houvras, Y.; Gillies, C.; Mbatchou, J.; White, R. R.; Kosmicki, J. A.; LeBlanc, M. G.; Jones, M.; Glass, D. J.; Lotta, L. A.; Cantor, M. N.; Atwal, G. S.; Locke, A. E.; Ferreira, M. A. R.; Deering, R.; Paulding, C.; Shuldiner, A. R.; Thurston, G.; Salerno, W.; Reid, J. G.; Overton, J.; Marchini, J.; Kang, H. M.; Baras, A.; Abecasis, G.; Jorgenson, E.
Show abstract
Clonal hematopoiesis (CH) refers to the expansion of certain blood cell lineages and has been associated with aging and adverse health outcomes. Here, we use exome sequence data on 628,388 individuals to identify 40,208 carriers of clonal hematopoiesis of indeterminate potential (CHIP). Using genome-wide and exome-wide association analyses, we identify 27 loci (24 novel) where germline genetic variation influences CH/CHIP predisposition, including missense variants in the DNA-repair gene PARP1 and the lymphocytic antigen coding gene LY75 that are associated with reduced incidence of CH/CHIP. Analysis of 5,194 health traits from the UK Biobank (UKB) found relationships between CHIP and severe COVID outcomes, cardiovascular disease, hematologic traits, malignancy, smoking, obesity, infection, and all-cause mortality. Longitudinal analyses revealed that one of the CHIP subtypes, DNMT3A-CHIP, is associated with the subsequent development of myeloid but not lymphoid leukemias, and with solid cancers including prostate and lung. Additionally, contrary to previous findings from the initial 50,000 UKB exomes, our results in the full sample do not support a role for IL-6 inhibition in reducing the risk of cardiovascular disease among CHIP carriers. Our findings demonstrate that CHIP represents a complex set of heterogenous phenotypes with shared and unique germline genetic causes and varied clinical implications.
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