bioRxiv · 10.1101/2023.03.27.534460
A naturally occurring variant of MBD4 causes maternal germline hypermutation in primates
Abstract
As part of an ongoing genome sequencing project at the Oregon National Primate Research Center, we identified a rhesus macaque with a rare homozygous frameshift mutation in the gene Methyl-CpG binding domain 4 (MBD4). MBD4 is responsible for the repair of C>T deamination mutations at CpG locations and has been linked to somatic hypermutation and cancer predisposition in humans. We show here that MBD4-associated hypermutation also affects the germline: the 6 offspring of the MBD4-null dam have a 4-6 fold increase in de novo mutation burden. This excess burden was predominantly C>T mutations at CpG locations consistent with MBD4 loss-of-function in the dam. There was also a significant excess of C>T at CpA sites, indicating an important, underappreciated role for MBD4 to repair deamination in CpA contexts. The MBD4-null dam developed sustained eosinophilia later in life, but we saw no other signs of neoplastic processes associated with MBD4 loss-of-function in humans, nor any obvious disease in the hypermutated offspring. This work provides what is likely the first evidence for a genetic factor causing hypermutation in the maternal germline of a mammal, and adds to the very small list of naturally occurring variants known to modulate germline mutation rates in mammals.
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Stendahl, A., Sanghvi, R., Peterson, S., Ray, K., Lima, A. C., Rahbari, R., Conrad, D.. 2023-03-29. A naturally occurring variant of MBD4 causes maternal germline hypermutation in primates. https://doi.org/10.1101/2023.03.27.534460
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