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Genomic and phenotypic correlates of mosaic loss of chromosome Y in blood

Yasminka A Jakubek et al. medRxiv. .

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  • Genomic and phenotypic correlates of mosaic loss of chromosome Y in blood.
    Jakubek YA, Ma X, Stilp AM, Yu F, Bacon J, Wong JW, Aguet F, Ardlie K, Arnett DK, Barnes K, Bis JC, Blackwell T, Becker LC, Boerwinkle E, Bowler RP, Budoff MJ, Carson AP, Chen J, Cho MH, Coresh J, Cox NJ, de Vries PS, DeMeo DL, Fardo DW, Fornage M, Guo X, Hall ME, Heard-Costa N, Hidalgo B, Irvin MR, Johnson AD, Jorgenson E, Kenny EE, Kessler MD, Levy D, Li Y, Lima JAC, Liu Y, Locke AE, Loos RJF, Machiela MJ, Mathias RA, Mitchell BD, Murabito JM, Mychaleckyj JC, North KE, Orchard P, Parker SCJ, Pershad Y, Peyser PA, Pratte KA, Psaty BM, Raffield LM, Redline S; Regeneron Genetics Center; Rich SS, Rotter JI, Shah SJ, Smith JA, Smith AP, Smith A, Taub MA, Tiwari HK, Tracy R, Tuftin B; NHLBI Trans-Omics for Precision Medicine Consortium; Bick AG, Sankaran VG, Reiner AP, Scheet P, Auer PL. Jakubek YA, et al. Am J Hum Genet. 2025 Feb 6;112(2):276-290. doi: 10.1016/j.ajhg.2024.12.014. Epub 2025 Jan 13. Am J Hum Genet. 2025. PMID: 39809269 Free PMC article.

Abstract

Mosaic loss of Y (mLOY) is the most common somatic chromosomal alteration detected in human blood. The presence of mLOY is associated with altered blood cell counts and increased risk of Alzheimer's disease, solid tumors, and other age-related diseases. We sought to gain a better understanding of genetic drivers and associated phenotypes of mLOY through analyses of whole genome sequencing of a large set of genetically diverse males from the Trans-Omics for Precision Medicine (TOPMed) program. This approach enabled us to identify differences in mLOY frequencies across populations defined by genetic similarity, revealing a higher frequency of mLOY in the European American (EA) ancestry group compared to those of Hispanic American (HA), African American (AA), and East Asian (EAS) ancestry. Further, we identified two genes ( CFHR1 and LRP6 ) that harbor multiple rare, putatively deleterious variants associated with mLOY susceptibility, show that subsets of human hematopoietic stem cells are enriched for activity of mLOY susceptibility variants, and that certain alleles on chromosome Y are more likely to be lost than others.

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