Please use this identifier to cite or link to this item:http://hdl.handle.net/20.500.12105/19190
Title
NSMCE2 suppresses cancer and aging in mice independently of its SUMO ligase activity.
Author(s)
Jacome, Ariana | Gutierrez-Martinez, Paula | Schiavoni, Federica | Tenaglia, Enrico | Martinez, Paula | Rodríguez-Acebes, Sara | Lecona, Emilio | Murga, Matilde CNIO | Mendez, Juan CNIO | Blasco, MA CNIO | Fernandez-Capetillo, Oscar CNIO
Date issued
2015-11-03
Citation
EMBO J . 2015 3;34(21):2604-19
Language
Inglés
Document type
journal article
Abstract
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.
MESH
Aging | Animals | B-Lymphocytes | Base Sequence | Cells, Cultured | Chromosome Segregation | DNA Breaks, Double-Stranded | DNA Mutational Analysis | DNA Replication | Female | Haploinsufficiency | Humans | Ligases | Mice, 129 Strain | Mice, Inbred C57BL | Mice, Knockout | Neoplasms | Protein Transport | RecQ Helicases | Sumoylation | Tumor Suppressor Proteins | Ubiquitin-Protein Ligases
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