Biallelic germline mutations in MAD1L1 induce a syndrome of aneuploidy with high tumor susceptibility

MAD1L1 中的双等位基因种系突变会诱发具有高肿瘤易感性的非整倍体综合征

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作者:Carolina Villarroya-Beltri, Ana Osorio, Raúl Torres-Ruiz, David Gómez-Sánchez, Marianna Trakala, Agustin Sánchez-Belmonte, Fátima Mercadillo, Begoña Hurtado, Borja Pitarch, Almudena Hernández-Núñez, Antonio Gómez-Caturla, Daniel Rueda, José Perea, Sandra Rodríguez-Perales, Marcos Malumbres, Miguel U

Abstract

Germline mutations leading to aneuploidy are rare, and their tumor-promoting properties are mostly unknown at the molecular level. We report here novel germline biallelic mutations in MAD1L1, encoding the spindle assembly checkpoint (SAC) protein MAD1, in a 36-year-old female with a dozen of neoplasias. Functional studies demonstrated lack of full-length protein and deficient SAC response, resulting in ~30 to 40% of aneuploid blood cells. Single-cell RNA analysis identified mitochondrial stress accompanied by systemic inflammation with enhanced interferon and NFκB signaling both in aneuploid and euploid cells, suggesting a non-cell autonomous response. MAD1L1 mutations resulted in specific clonal expansions of γδ T cells with chromosome 18 gains and enhanced cytotoxic profile as well as intermediate B cells with chromosome 12 gains and transcriptomic signatures characteristic of leukemia cells. These data point to MAD1L1 mutations as the cause of a new variant of mosaic variegated aneuploidy with systemic inflammation and unprecedented tumor susceptibility.

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