Determinants of mosaic chromosomal alteration fitness
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Published:2024-05-07
Issue:1
Volume:15
Page:
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ISSN:2041-1723
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Container-title:Nature Communications
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language:en
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Short-container-title:Nat Commun
Author:
Pershad YashORCID, Mack Taralynn, Poisner HannahORCID, Jakubek Yasminka A., Stilp Adrienne M.ORCID, Mitchell Braxton D.ORCID, Lewis Joshua P.ORCID, Boerwinkle Eric, Loos Ruth J. F.ORCID, Chami NathalieORCID, Wang ZheORCID, Barnes KathleenORCID, Pankratz NathanORCID, Fornage MyriamORCID, Redline Susan, Psaty Bruce M.ORCID, Bis Joshua C.ORCID, Shojaie Ali, Silverman Edwin K., Cho Michael H., Yun Jeong H.ORCID, DeMeo Dawn, Levy Daniel, Johnson Andrew D.ORCID, Mathias Rasika A.ORCID, Taub Margaret A., Arnett Donna, North Kari E.ORCID, Raffield Laura M.ORCID, Carson April P.ORCID, Doyle Margaret F., Rich Stephen S.ORCID, Rotter Jerome I.ORCID, Guo XiuqingORCID, Cox Nancy J., Roden Dan M.ORCID, Franceschini NoraORCID, Desai Pinkal, Reiner Alex P.ORCID, Auer Paul L.ORCID, Scheet Paul A.ORCID, Jaiswal SiddharthaORCID, Weinstock Joshua S.ORCID, Bick Alexander G.ORCID
Abstract
AbstractClonal hematopoiesis (CH) is characterized by the acquisition of a somatic mutation in a hematopoietic stem cell that results in a clonal expansion. These driver mutations can be single nucleotide variants in cancer driver genes or larger structural rearrangements called mosaic chromosomal alterations (mCAs). The factors that influence the variations in mCA fitness and ultimately result in different clonal expansion rates are not well understood. We used the Passenger-Approximated Clonal Expansion Rate (PACER) method to estimate clonal expansion rate as PACER scores for 6,381 individuals in the NHLBI TOPMed cohort with gain, loss, and copy-neutral loss of heterozygosity mCAs. Our mCA fitness estimates, derived by aggregating per-individual PACER scores, were correlated (R2 = 0.49) with an alternative approach that estimated fitness of mCAs in the UK Biobank using population-level distributions of clonal fraction. Among individuals with JAK2 V617F clonal hematopoiesis of indeterminate potential or mCAs affecting the JAK2 gene on chromosome 9, PACER score was strongly correlated with erythrocyte count. In a cross-sectional analysis, genome-wide association study of estimates of mCA expansion rate identified a TCL1A locus variant associated with mCA clonal expansion rate, with suggestive variants in NRIP1 and TERT.
Funder
U.S. Department of Health & Human Services | NIH | National Institute on Aging U.S. Department of Health & Human Services | NIH | National Heart, Lung, and Blood Institute Burroughs Wellcome Foundation Career Award for Medical Scientists U.S. Department of Health & Human Services | NIH | National Institute of General Medical Sciences
Publisher
Springer Science and Business Media LLC
Reference41 articles.
1. Beerman, I. Accumulation of DNA damage in the aged hematopoietic stem cell compartment. Semin. Hematol. 54, 12–18 (2017). 2. Jaiswal, S. & Ebert, B. L. Clonal hematopoiesis in human aging and disease. Science 366, eaan4673 (2019). 3. Bick, A. G. et al. Inherited causes of clonal haematopoiesis in 97,691 whole genomes. Nature 586, 763–768 (2020). 4. Terao, C. et al. Chromosomal alterations among age-related haematopoietic clones in Japan. Nature 584, 130–135 (2020). 5. Loh, P.-R. et al. Insights into clonal haematopoiesis from 8,342 mosaic chromosomal alterations. Nature 559, 350–355 (2018).
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