Jacome Ariana, Gutierrez-Martinez Paula, Schiavoni Federica, Tenaglia Enrico, Martinez Paula, Rodríguez-Acebes Sara, Lecona Emilio, Murga Matilde, Méndez Juan, Blasco Maria A, Fernandez-Capetillo Oscar
Genomic Instability Group, Spanish National Cancer Research Centre, Madrid, Spain.
Telomeres and Telomerase Group, Spanish National Cancer Research Centre, Madrid, Spain.
EMBO J. 2015 Nov 3;34(21):2604-19. doi: 10.15252/embj.201591829. Epub 2015 Oct 6.
The SMC5/6 complex is the least understood of SMC complexes. In yeast, smc5/6 mutants phenocopy mutations in sgs1, the BLM ortholog that is deficient in Bloom's syndrome (BS). We here show that NSMCE2 (Mms21, in Saccharomyces cerevisiae), an essential SUMO ligase of the SMC5/6 complex, suppresses cancer and aging in mice. Surprisingly, a mutation that compromises NSMCE2-dependent SUMOylation does not have a detectable impact on murine lifespan. In contrast, NSMCE2 deletion in adult mice leads to pathologies resembling those found in patients of BS. Moreover, and whereas NSMCE2 deletion does not have a detectable impact on DNA replication, NSMCE2-deficient cells also present the cellular hallmarks of BS such as increased recombination rates and an accumulation of micronuclei. Despite the similarities, NSMCE2 and BLM foci do not colocalize and concomitant deletion of Blm and Nsmce2 in B lymphocytes further increases recombination rates and is synthetic lethal due to severe chromosome mis-segregation. Our work reveals that SUMO- and BLM-independent activities of NSMCE2 limit recombination and facilitate segregation; functions of the SMC5/6 complex that are necessary to prevent cancer and aging in mice.
SMC5/6复合物是SMC复合物中了解最少的。在酵母中,smc5/6突变体的表型与sgs1突变相似,sgs1是布鲁姆综合征(BS)中缺陷的BLM直系同源物。我们在此表明,NSMCE2(酿酒酵母中的Mms21)是SMC5/6复合物的一种必需的SUMO连接酶,可抑制小鼠的癌症和衰老。令人惊讶的是,一个损害NSMCE2依赖性SUMO化的突变对小鼠寿命没有可检测到的影响。相反,成年小鼠中NSMCE2的缺失会导致类似于BS患者中发现的病理状况。此外,虽然NSMCE2的缺失对DNA复制没有可检测到的影响,但NSMCE2缺陷细胞也呈现出BS的细胞特征,如重组率增加和微核积累。尽管存在相似之处,但NSMCE2和BLM焦点并不共定位,并且B淋巴细胞中Blm和Nsmce2的同时缺失会进一步增加重组率,并且由于严重的染色体错分离而具有合成致死性。我们的工作表明,NSMCE2的SUMO和BLM非依赖性活性限制重组并促进分离;这是SMC5/6复合物在预防小鼠癌症和衰老中所必需的功能。
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