Machin N A, Lee J M, Barnes G
Department of Molecular and Cell Biology, University of California, Berkeley 94720, USA.
Mol Biol Cell. 1995 Sep;6(9):1241-59. doi: 10.1091/mbc.6.9.1241.
To better understand the dynamic regulation of microtubule structures in yeast, we studied a conditional-lethal beta-tubulin mutation tub2-150. This mutation is unique among the hundreds of tubulin mutations isolated in Saccharomyces cerevisiae in that it appears to cause an increase in the stability of microtubules. We report here that this allele is a mutation of threonine 238 to alanine, and that tub2-150 prevents the spindle from elongating during anaphase, suggesting a nuclear microtubule defect. To identify regulators of microtubule stability and/or anaphase, yeast genes were selected that, when overexpressed, could suppress the tub2-150 temperature-sensitive phenotype. One of these genes, JSN1, encodes a protein of 125 kDa that has limited similarity to a number of proteins of unknown function. Overexpression of the JSN1 gene in a TUB2 strain causes that strain to become more sensitive to benomyl, a microtubule-destabilizing drug. Of a representative group of microtubule mutants, only one other mutation, tub2-404, could be suppressed by JSN1 overexpression, showing that JSN1 is an allele-specific suppressor. As tub2-404 mutants are also defective for spindle elongation, this provides additional support for a role for JSN1 during anaphase.
为了更好地理解酵母中微管结构的动态调控,我们研究了一种条件致死性的β-微管蛋白突变体tub2-150。在酿酒酵母中分离出的数百种微管蛋白突变体中,这种突变是独特的,因为它似乎会导致微管稳定性增加。我们在此报告,该等位基因是苏氨酸238突变为丙氨酸,并且tub2-150会阻止纺锤体在后期伸长,这表明存在核微管缺陷。为了鉴定微管稳定性和/或后期的调节因子,我们选择了一些酵母基因,当这些基因过表达时,可以抑制tub2-150的温度敏感表型。其中一个基因JSN1编码一种125 kDa的蛋白质,它与许多功能未知的蛋白质有有限的相似性。在TUB2菌株中过表达JSN1基因会使该菌株对苯菌灵(一种微管破坏药物)更加敏感。在一组代表性的微管突变体中,只有另一个突变体tub2-404可以被JSN1过表达所抑制,这表明JSN1是一个等位基因特异性抑制因子。由于tub2-404突变体在纺锤体伸长方面也有缺陷,这为JSN1在后期的作用提供了额外的支持。