Determinants of mosaic chromosomal alteration fitness
Author:
Pershad YashORCID, Mack TaralynnORCID, Poisner HannahORCID, Jakubek Yasminka AORCID, Stilp Adrienne MORCID, Mitchell Braxton DORCID, Lewis Joshua PORCID, Boerwinkle EricORCID, Loos Ruth JORCID, Chami NathalieORCID, Wang Zhe, Barnes KathleenORCID, Pankratz NathanORCID, Fornage MyriamORCID, Redline SusanORCID, Psaty Bruce MORCID, Bis Joshua CORCID, Shojaie AliORCID, Silverman Edwin KORCID, Cho Michael HORCID, Yun Jeong, DeMeo DawnORCID, Levy DanielORCID, Johnson Andrew, Mathias RasikaORCID, Taub MargaretORCID, Arnett DonnaORCID, North KariORCID, Raffield Laura MORCID, Carson April, Doyle Margaret F, Rich Stephen S.ORCID, Rotter Jerome I.ORCID, Guo Xiuqing, Cox NancyORCID, Roden Dan MORCID, Franceschini NoraORCID, Desai PinkalORCID, Reiner AlexORCID, Auer Paul L, Scheet Paul, Jaiswal SiddharthaORCID, Weinstock Joshua SORCID, Bick Alexander GORCID
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 for 6,381 individuals in the NHLBI TOPMed cohort with gain, loss, and copy-neutral loss of heterozygosity mCAs. Our estimates of mCA fitness were correlated (R2= 0.49) with an alternative approach that estimated fitness of mCAs in the UK Biobank using a theoretical probability distribution. Individuals with lymphoid-associated mCAs had a significantly higher white blood cell count and faster clonal expansion rate. In a cross-sectional analysis, genome-wide association study of estimates of mCA expansion rate identifiedTCL1A,NRIP1, andTERTlocus variants as modulators of mCA clonal expansion rate.
Publisher
Cold Spring Harbor Laboratory
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