bioRxiv · 10.1101/2022.06.16.496499
Fancm regulates meiotic double-strand break repair pathway choice in mammals
Abstract
Meiotic crossovers are required for accurate chromosome segregation and to produce new allelic combinations. Meiotic crossover numbers are tightly regulated within a narrow range, despite an excess of initiating DNA double-strand breaks. Here, we describe the tumour suppressor FANCM as a meiotic anti-crossover factor in mammals. Crossover analyses with single-gamete and pedigree datasets both reveal a genome-wide increase in crossover frequencies in Fancm-deficient mice. Gametogenesis is heavily perturbed in Fancm loss of function mice, which is consistent with the reproductive defects reported in humans with biallelic FANCM mutations. A portion of the gametogenesis defects can be attributed to the cGAS-STING pathway. Despite the gametogenesis phenotypes in Fancm mutants both sexes were capable of producing offspring. We propose that the anti-crossover function and role in gametogenesis of Fancm are separable and will inform diagnostic pathways for human genomic instability disorders.
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Tsui, V., Lyu, R., Novakovic, S., Stringer, J. M., Dunleavy, J. E. M., Granger, E., Semple, T., Leitchter, A., Martelotto, L., Merriner, D. J., Liu, R., McNeill, L., Zerafa, N., Hoffmann, E., O'Bryan, M. K., Hutt, K., Deans, A. J., Heierhorst, J., McCarthy, D. J., Crismani, W.. 2022-06-17. Fancm regulates meiotic double-strand break repair pathway choice in mammals. https://doi.org/10.1101/2022.06.16.496499
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