Verver Dideke E, Hwang Grace H, Jordan Philip W, Hamer Geert
Center for Reproductive Medicine, Women's and Children's Hospital, Academic Medical Center, University of Amsterdam, Amsterdam, The Netherlands.
Department of Biochemistry and Molecular Biology, Johns Hopkins University Bloomberg School of Public Health, Baltimore, MD, USA.
Chromosoma. 2016 Mar;125(1):15-27. doi: 10.1007/s00412-015-0518-9. Epub 2015 May 7.
The Smc5/6 complex, along with cohesin and condensin, is a member of the structural maintenance of chromosome (SMC) family, large ring-like protein complexes that are essential for chromatin structure and function. Thanks to numerous studies of the mitotic cell cycle, Smc5/6 has been implicated to have roles in homologous recombination, restart of stalled replication forks, maintenance of ribosomal DNA (rDNA) and heterochromatin, telomerase-independent telomere elongation, and regulation of chromosome topology. The nature of these functions implies that the Smc5/6 complex also contributes to the profound chromatin changes, including meiotic recombination, that characterize meiosis. Only recently, studies in diverse model organisms have focused on the potential meiotic roles of the Smc5/6 complex. Indeed, Smc5/6 appears to be essential for meiotic recombination. However, due to both the complexity of the process of meiosis and the versatility of the Smc5/6 complex, many additional meiotic functions have been described. In this review, we provide a clear overview of the multiple functions found so far for the Smc5/6 complex in meiosis. Additionally, we compare these meiotic functions with the known mitotic functions in an attempt to find a common denominator and thereby create clarity in the field of Smc5/6 research.
Smc5/6复合物与黏连蛋白和凝缩蛋白一样,是染色体结构维持(SMC)家族的成员,该家族是大型环状蛋白复合物,对染色质的结构和功能至关重要。由于对有丝分裂细胞周期进行了大量研究,Smc5/6已被认为在同源重组、停滞复制叉的重启、核糖体DNA(rDNA)和异染色质的维持、端粒酶非依赖性端粒延长以及染色体拓扑结构的调节中发挥作用。这些功能的性质表明,Smc5/6复合物也参与了减数分裂中发生的深刻染色质变化,包括减数分裂重组。直到最近,对多种模式生物的研究才聚焦于Smc5/6复合物在减数分裂中的潜在作用。事实上,Smc5/6似乎对减数分裂重组至关重要。然而,由于减数分裂过程的复杂性以及Smc5/6复合物的多功能性,人们还描述了许多其他减数分裂功能。在本综述中,我们清晰地概述了目前已发现的Smc5/6复合物在减数分裂中的多种功能。此外,我们将这些减数分裂功能与已知的有丝分裂功能进行比较,试图找到一个共同特征,从而在Smc5/6研究领域中厘清思路。