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Parental Somatic Mosaicism Is Underrecognized and Influences Recurrence Risk of Genomic Disorders
Authors:Ian?M Campbell  Bo Yuan  Caroline Robberecht  Rolph Pfundt  Przemyslaw Szafranski  Meriel?E McEntagart  Sandesh?CS Nagamani  Ayelet Erez  Magdalena Bartnik  Barbara Wi?niowiecka-Kowalnik  Katie?S Plunkett  Amber?N Pursley  Sung-Hae?L Kang  Weimin Bi  Seema?R Lalani  Carlos?A Bacino  Mala Vast  Karen Marks  Michael Patton  Peter Olofsson  Ankita Patel  Joris?A Veltman  Sau?Wai Cheung  Chad?A Shaw  Lisenka?ELM Vissers  Joris?R Vermeesch  James?R Lupski  Pawe? Stankiewicz
Abstract:New human mutations are thought to originate in germ cells, thus making a recurrence of the same mutation in a sibling exceedingly rare. However, increasing sensitivity of genomic technologies has anecdotally revealed mosaicism for mutations in somatic tissues of apparently healthy parents. Such somatically mosaic parents might also have germline mosaicism that can potentially cause unexpected intergenerational recurrences. Here, we show that somatic mosaicism for transmitted mutations among parents of children with simplex genetic disease is more common than currently appreciated. Using the sensitivity of individual-specific breakpoint PCR, we prospectively screened 100 families with children affected by genomic disorders due to rare deletion copy-number variants (CNVs) determined to be de novo by clinical analysis of parental DNA. Surprisingly, we identified four cases of low-level somatic mosaicism for the transmitted CNV in DNA isolated from parental blood. Integrated probabilistic modeling of gametogenesis developed in response to our observations predicts that mutations in parental blood increase recurrence risk substantially more than parental mutations confined to the germline. Moreover, despite the fact that maternally transmitted mutations are the minority of alleles, our model suggests that sexual dimorphisms in gametogenesis result in a greater proportion of somatically mosaic transmitting mothers who are thus at increased risk of recurrence. Therefore, somatic mosaicism together with sexual differences in gametogenesis might explain a considerable fraction of unexpected recurrences of X-linked recessive disease. Overall, our results underscore an important role for somatic mosaicism and mitotic replicative mutational mechanisms in transmission genetics.
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