Yokomori K
Department of Biological Chemistry, 240D Med. Sci. I, College of Medicine, University of California, Irvine, CA 92697-1700, USA.
Curr Top Microbiol Immunol. 2003;274:79-112. doi: 10.1007/978-3-642-55747-7_4.
Structural maintenance of chromosomes (SMC) family proteins have attracted much attention for their unique protein structure and critical roles in mitotic chromosome organization. Elegant genetic and biochemical studies in yeast and Xenopus identified two different SMC heterodimers in two conserved multiprotein complexes termed 'condensin' and 'cohesin'. These complexes are required for mitotic chromosome condensation and sister chromatid cohesion, respectively, both of which are prerequisite to accurate segregation of chromosomes. Although structurally similar, the SMC proteins in condensin and cohesin appear to have distinct functions, whose specificity and cell cycle regulation are critically determined by their interactions with unique sets of associated proteins. Recent studies of subcellular localization of SMC proteins and SMC-containing complexes, identification of their interactions with other cellular factors, and discovery of new SMC family members have uncovered unexpected roles for SMC proteins and SMC-containing complexes in different aspects of genome functions and chromosome organization beyond mitosis, all of which are critical for the maintenance of chromosome integrity.
染色体结构维持(SMC)家族蛋白因其独特的蛋白质结构以及在有丝分裂染色体组织中的关键作用而备受关注。在酵母和非洲爪蟾中进行的精细遗传和生化研究,在两种保守的多蛋白复合物“凝缩素”和“黏连蛋白”中鉴定出了两种不同的SMC异源二聚体。这些复合物分别是有丝分裂染色体凝聚和姐妹染色单体黏连所必需的,而这两者都是染色体准确分离的前提条件。尽管结构相似,但凝缩素和黏连蛋白中的SMC蛋白似乎具有不同的功能,其特异性和细胞周期调控在很大程度上取决于它们与独特的相关蛋白集的相互作用。最近对SMC蛋白和含SMC复合物的亚细胞定位研究、对它们与其他细胞因子相互作用的鉴定以及新SMC家族成员的发现,揭示了SMC蛋白和含SMC复合物在有丝分裂之外的基因组功能和染色体组织的不同方面具有意想不到的作用,所有这些对于维持染色体完整性都至关重要。