Schatz P J, Solomon F, Botstein D
Mol Cell Biol. 1986 Nov;6(11):3722-33. doi: 10.1128/mcb.6.11.3722-3733.1986.
Microtubules in yeast are essential components of the mitotic and meiotic spindles and are essential for nuclear movement during cell division and mating. The relative importance in these processes of the two divergent alpha-tubulin genes of the budding yeast Saccharomyces cerevisiae, TUB1 and TUB3, was examined through the construction of null mutations and by increasing their copy number on chromosomes and on plasmids. Experiments with null alleles of TUB3 showed that TUB3 was not essential for mitosis, meiosis, or mating. Null alleles of TUB3, however, did cause several phenotypes, including hypersensitivity to the antimicrotubule drug benomyl and poor spore viability. On the other hand, the TUB1 gene was essential for growth of normal haploid cells. Even in diploids heterozygous for a TUB1 null allele, several dominant phenotypes were evident, including slow growth and poor sporulation. This functional difference between the two genes is apparently due to different levels of expression, because extra copies of either gene could suppress the defects caused by a null mutation in the other. We conclude that in spite of the 10% divergence between the products of the two genes, there is no essential qualitative functional difference between them.
酵母中的微管是有丝分裂和减数分裂纺锤体的重要组成部分,对于细胞分裂和交配过程中的核移动至关重要。通过构建无效突变以及增加其在染色体和质粒上的拷贝数,研究了出芽酵母酿酒酵母的两个不同α-微管蛋白基因TUB1和TUB3在这些过程中的相对重要性。对TUB3无效等位基因的实验表明,TUB3对于有丝分裂、减数分裂或交配并非必不可少。然而,TUB3无效等位基因确实导致了几种表型,包括对抗微管药物苯菌灵过敏以及孢子活力差。另一方面,TUB1基因对于正常单倍体细胞的生长至关重要。即使在TUB1无效等位基因杂合的二倍体中,也有几种显性表型明显,包括生长缓慢和孢子形成不良。这两个基因之间的功能差异显然是由于表达水平不同,因为任一基因的额外拷贝都可以抑制另一个基因无效突变引起的缺陷。我们得出结论,尽管两个基因的产物之间存在10%的差异,但它们之间没有本质的定性功能差异。