Gallego-Paez Lina Marcela, Tanaka Hiroshi, Bando Masashige, Takahashi Motoko, Nozaki Naohito, Nakato Ryuichiro, Shirahige Katsuhiko, Hirota Toru
Research Center for Epigenetic Disease, Institute of Molecular and Cellular Biosciences, University of Tokyo, Tokyo 113-0032, Japan Department of Biological Sciences, Tokyo Institute of Technology, Yokohama 226-8501, Japan Bio-Frontier Research Center, Tokyo Institute of Technology, Yokohama 226-8501, Japan Cancer Institute, Japanese Foundation for Cancer Research, Tokyo 135-8550, Japan Core Research for Evolutional Science and Technology (CREST), Japan Science and Technology Agency, Tokyo 102-0076, Japan.
Mol Biol Cell. 2014 Jan;25(2):302-17. doi: 10.1091/mbc.E13-01-0020. Epub 2013 Nov 20.
The structural maintenance of chromosomes (SMC) proteins constitute the core of critical complexes involved in structural organization of chromosomes. In yeast, the Smc5/6 complex is known to mediate repair of DNA breaks and replication of repetitive genomic regions, including ribosomal DNA loci and telomeres. In mammalian cells, which have diverse genome structure and scale from yeast, the Smc5/6 complex has also been implicated in DNA damage response, but its further function in unchallenged conditions remains elusive. In this study, we addressed the behavior and function of Smc5/6 during the cell cycle. Chromatin fractionation, immunofluorescence, and live-cell imaging analyses indicated that Smc5/6 associates with chromatin during interphase but largely dissociates from chromosomes when they condense in mitosis. Depletion of Smc5 and Smc6 resulted in aberrant mitotic chromosome phenotypes that were accompanied by the abnormal distribution of topoisomerase IIα (topo IIα) and condensins and by chromosome segregation errors. Importantly, interphase chromatin structure indicated by the premature chromosome condensation assay suggested that Smc5/6 is required for the on-time progression of DNA replication and subsequent binding of topo IIα on replicated chromatids. These results indicate an essential role of the Smc5/6 complex in processing DNA replication, which becomes indispensable for proper sister chromatid assembly in mitosis.
染色体结构维持(SMC)蛋白构成了参与染色体结构组织的关键复合物的核心。在酵母中,已知Smc5/6复合物介导DNA断裂的修复以及包括核糖体DNA位点和端粒在内的重复基因组区域的复制。在基因组结构和规模与酵母不同的哺乳动物细胞中,Smc5/6复合物也与DNA损伤反应有关,但其在未受挑战条件下的进一步功能仍不清楚。在本研究中,我们探讨了Smc5/6在细胞周期中的行为和功能。染色质分级分离、免疫荧光和活细胞成像分析表明,Smc5/6在间期与染色质结合,但在有丝分裂中染色体浓缩时大多与染色体解离。Smc5和Smc6的缺失导致异常的有丝分裂染色体表型,伴随着拓扑异构酶IIα(topo IIα)和凝聚素的异常分布以及染色体分离错误。重要的是,早熟染色体凝集试验显示的间期染色质结构表明,Smc5/6是DNA复制按时进行以及随后topo IIα在复制染色单体上结合所必需的。这些结果表明Smc5/6复合物在处理DNA复制中起重要作用,这对于有丝分裂中正确的姐妹染色单体组装变得不可或缺。