Paternal de novo disease risk is shaped primarily by universal age-associated mutation and selection, while early mosaicism creates uncommon but clinically important high-risk individuals.
Abstract
De novo mutations (DNMs) in the paternal germline are a major cause of developmental disorders, but how mutation timing, paternal age, and spermatogonial selection jointly shape transmissible risk within individual fathers is unclear. We combined trio whole-genome sequencing from 167 families with deep targeted NanoSeq profiling of sperm from 127 fathers of children with confirmed pathogenic DNMs. Transmitted DNM burden and paternal sperm mutation burden, spectra, and selection landscape were indistinguishable from population reference cohorts. Six fathers carried pathogenic early mosaic variants detectable in sperm at variant allele fractions (VAFs) of 0.7%-14.8%, creating individual recurrence-risk outliers. However, early mosaics accounted for ∼8% of the cohort-aggregated pathogenic burden exome-wide, compared with ∼18% from known positively selected drivers and ∼74% from other rare variants accumulating with paternal age. Thus, paternal de novo disease risk is shaped primarily by universal age-associated mutation and selection, while early mosaicism creates uncommon but clinically important high-risk individuals.
Paternal and maternal aging exhibited distinct mutational patterns, with maternal DNM accumulation accelerating at advanced ages, and in vitro embryo manipulation was associated with increased early post-zygotic mosaic mutations, particularly C > A substitutions linked to delayed neurocognitive development at 1 year.
N. Qin, Jun-Cheng Dai, Yue Jiang et al.· Nature Medicine· 1 citation
It is demonstrated that somatic rather than germline risk predominates in middle-aged healthy adults and the VAF-haplotype-sharing analysis framework provides a scalable framework for variant classification in large-scale population genomics.
H. A. MacGregor, J. Blundell, D. Easton· medRxiv· 0 citations
Pathogenic variants on the paternal allele of IGF2 are linked to Silver-Russell syndrome (SRS). This report describes two unrelated individuals-a 5-year-old girl and an adult female-with de novo IGF2 missense variants, both diagnosed with SRS. While one exhibited normal development, the other had intellectual disabilit...
T. Juul, S. E. Boonen, K. V. Pedersen et al.· Clinical Genetics· 0 citations
It is demonstrated that LRS-based SV analysis, supported by orthogonal SRS re-analysis, can resolve clinically significant SVs in families who remain unsolved after standard rare disease testing.
P. Dutta, A. Pagnamenta, Christelle Robert et al.· European Journal of Human Ge...· 0 citations
This work examines puberty, a period of intense hormone-dependent proliferation that confers reproductive capacity, as a plausible but understudied window of vulnerability for accelerated mutagenesis, and reveals that somatic mutations accumulate approximately linearly with age across tissues, from a few hundred per ce...
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BACKGROUND
X-linked genetic diseases affect males and females through different inheritance patterns influenced by sex, where differential methylation caused by X-chromosome inactivation can present with a range of asymptomatic, mild, and severe symptoms in females. Targeted long-read sequencing (LRS) through adaptive...
Jia Zheng, Keying Li, Jin Han et al.· Clinical Chemistry· 0 citations
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