bioRxiv · 10.1101/2020.10.14.339796
Temporal stability of human sperm mosaic mutations results in life-long threat of transmission to offspring
Abstract
Every newborn harbors scores of new single nucleotide variants (SNVs) that may impact health and disease1-4; the majority of these are contributed by the paternal germ cells5. In some cases, these mutations are identifiable in a subset of the parents cells--a phenomenon called mosaicism, which is capable of producing disease recurrence6-8. Here, we provide a comprehensive analysis of male gonadal mosaic mutations, employing 300x whole genome sequencing (WGS) of blood and sperm in 17 healthy individuals, including assessment across multiple samples and age groups. Approximately 1 in 15 healthy males is predicted to harbor a transmissible, likely pathogenic exonic variant that is mosaic in his sperm. In general, only a third of sperm mosaic mutations were detectable in blood cells, all were remarkably stable over the course of months to years, and 23% were present in 5% or more of sperm cells. There was no evidence of age-dependent clonal expansion or collapse, as seen in hematopoiesis. Thus, despite the observed increase of mutations in offspring of men with advanced paternal age, detectable sperm mosaicism remains stable, represents a life-long transmission risk to offspring, and suggests a testis stem cell niche that prevents widespread clonality.
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Yang, X., Breuss, M. W., Xu, X., Antaki, D., James, K. N., Stanley, V., Ball, L. L., George, R. D., Wirth, S. A., Cao, B., Nguyen, A., McEvoy-Venneri, J., Chai, G., Nahas, S., Van Der Kraan, L., Ding, Y., Sebat, J., Gleeson, J. G.. 2020-10-14. Temporal stability of human sperm mosaic mutations results in life-long threat of transmission to offspring. https://doi.org/10.1101/2020.10.14.339796
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