Strunnikov A V, Hogan E, Koshland D
Carnegie Institution of Washington, Department of Embryology, Baltimore, Maryland 21210.
Genes Dev. 1995 Mar 1;9(5):587-99. doi: 10.1101/gad.9.5.587.
We characterized the SMC2 (structural maintenance of chromosomes) gene that encodes a new Saccharomyces cerevisiae member of the growing family of SMC proteins. This family of evolutionary conserved proteins was introduced with identification of SMC1, a gene essential for chromosome segregation in budding yeast. The analysis of the putative structure of the Smc2 protein (Smc2p) suggests that it defines a distinct subgroup within the SMC family. This subgroup includes the ScII, XCAPE, and cut14 proteins characterized concurrently. Smc2p is a nuclear, 135-kD protein that is essential for vegetative growth. The temperature-sensitive mutation, smc2-6, confers a defect in chromosome segregation and causes partial chromosome decondensation in cells arrested in mitosis. The Smc2p molecules are able to form complexes in vivo both with Smc1p and with themselves, suggesting that they can assemble into a multimeric structure. In this study we present the first evidence that two proteins belonging to two different subgroups within the SMC family carry nonredundant biological functions. Based on genetic, biochemical, and evolutionary data we propose that the SMC family is a group of prokaryotic and eukaryotic chromosomal proteins that are likely to be one of the key components in establishing the ordered structure of chromosomes.
我们对编码酿酒酵母中SMC蛋白家族新成员的SMC2(染色体结构维持)基因进行了表征。随着对酿酒酵母中染色体分离所必需的基因SMC1的鉴定,引入了这个进化保守蛋白家族。对Smc2蛋白(Smc2p)假定结构的分析表明,它在SMC家族中定义了一个独特的亚组。这个亚组包括同时被表征的ScII、XCAPE和cut14蛋白。Smc2p是一种135-kD的核蛋白,对营养生长至关重要。温度敏感突变体smc2-6在染色体分离方面存在缺陷,并导致处于有丝分裂停滞状态的细胞中部分染色体解聚。Smc2p分子在体内既能与Smc1p形成复合物,也能自身形成复合物,这表明它们可以组装成多聚体结构。在本研究中,我们首次提供证据表明,SMC家族中属于两个不同亚组的两种蛋白具有非冗余的生物学功能。基于遗传、生化和进化数据,我们提出SMC家族是一组原核和真核染色体蛋白,可能是建立染色体有序结构的关键成分之一。