在单倍体细胞中同时表达两个MAT位点可以抑制酵母微管运动基因的突变。

O Steinberg-Neifach, D Eshel
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引用次数: 6

摘要

运动蛋白相关的Cin8p和细胞质动力蛋白是酵母后期纺锤体伸长所需的微管相关运动蛋白。DYN1(编码动力蛋白重链的基因)缺失和携带温度敏感等位基因cin8-3的细胞不能在35℃以上的温度下生长。在这里,我们报道了单倍体cin8-3 DYN1 delta细胞的温度敏感性被同时存在的基因座MATa和MATalpha抑制,这两个基因座包含决定交配型和倍性依赖表型的调节基因。两个MAT位点的存在也使单倍体细胞对抗微管药物苯甲酰更具抗性。我们的研究结果表明,在准备处理有丝分裂中DNA的两倍量时,二倍体细胞的微管特性在一个由交配型调节基因控制的途径中被修改。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simultaneous expression of both MAT loci in haploid cells suppresses mutations in yeast microtubule motor genes.

The kinesin-related Cin8p and cytoplasmic dynein are microtubule-associated motor proteins required for anaphase spindle elongation in the yeast Saccharomyces cerevisiae. Cells deleted for DYN1 (the gene encoding the dynein heavy chain) and carrying the temperature-sensitive allele cin8-3 cannot grow at temperatures above 35 degrees C. Here, we report that the temperature sensitivity of haploid cin8-3 dyn1delta cells is suppressed by the simultaneous presence of the loci MATa and MATalpha, which contain the regulatory genes that determine mating-type and ploidy-dependent phenotypes. The presence of the two MAT loci also rendered haploid cells more resistant to the antimicrotubule drug benomyl. Our results suggest that, in preparation for handling double the amount of DNA in mitosis, properties of microtubules in diploid cells are modified in a pathway controlled by the mating-type regulatory genes.

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