Zheng L, Chen Y, Lee W H
Department of Molecular Medicine, Institute of Biotechnology, University of Texas Health Science Center San Antonio, San Antonio, Texas 78245, USA.
Mol Cell Biol. 1999 Aug;19(8):5417-28. doi: 10.1128/MCB.19.8.5417.
hsHec1p, a Homo sapiens coiled-coil-enriched protein, plays an important role in M-phase progression in mammalian cells. A Saccharomyces cerevisiae protein, identical to Tid3p/Ndc80p and here designated scHec1p, has similarities in structure and biological function to hsHec1p. Budding yeast cells deleted in the scHEC1/NDC80 allele are not viable, but this lethal phenotype can be rescued by hsHEC1 under control of the endogenous scHEC1 promoter. At the nonpermissive temperature, significant mitotic delay, chromosomal missegregation, and decreased viability were observed in yeast cells with temperature-sensitive (ts) alleles of hsHEC1. In the hshec1-113 ts mutant, we found a single-point mutation changing Trp395 to a stop codon, which resulted in the expression of a C-terminally truncated 45-kDa protein. The binding of this mutated protein, hshec1-113p, to five identified hsHec1p-associated proteins was unchanged, while its binding to human SMC1 protein and yeast Smc1p was ts. Hec1p also interacts with Smc2p, and the binding of the mutated hshec1-113p to Smc2p was not ts. Overexpression of either hsHEC1 or scHEC1 suppressed the lethal phenotype of smc1-2 and smc2-6 at nonpermissive temperatures, suggesting that the interactions between Hec1p and Smc1p and -2p are biologically significant. These results suggest that Hec1 proteins play a critical role in modulating chromosomal segregation, in part, through their interactions with SMC proteins.
人源富含卷曲螺旋蛋白(hsHec1p)在哺乳动物细胞的M期进程中发挥重要作用。一种与Tid3p/Ndc80p相同的酿酒酵母蛋白,在此命名为scHec1p,其在结构和生物学功能上与hsHec1p相似。缺失scHEC1/NDC80等位基因的芽殖酵母细胞无法存活,但这种致死表型可通过在内源scHEC1启动子控制下的hsHEC1得以挽救。在非允许温度下,具有hsHEC1温度敏感(ts)等位基因的酵母细胞出现明显的有丝分裂延迟、染色体错分离以及活力下降。在hshec1 - 113 ts突变体中,我们发现一个单点突变将Trp395变为终止密码子,导致表达一种C末端截短的45 kDa蛋白。这种突变蛋白hshec1 - 113p与五种已鉴定的hsHec1p相关蛋白的结合未发生变化,而其与人SMC1蛋白和酵母Smc1p的结合是温度敏感的。Hec1p也与Smc2p相互作用,并且突变的hshec1 - 113p与Smc2p的结合不是温度敏感的。在非允许温度下,hsHEC1或scHEC1的过表达均抑制了smc1 - 2和smc2 - 6的致死表型,这表明Hec1p与Smc1p和 - 2p之间的相互作用具有生物学意义。这些结果表明,Hec1蛋白在调节染色体分离中发挥关键作用,部分是通过它们与SMC蛋白的相互作用实现的。