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酿酒酵母中的交配型控制:a1-α2阻遏缺陷型突变体的分离与鉴定

Mating-type control in Saccharomyces cerevisiae: isolation and characterization of mutants defective in repression by a1-alpha 2.

作者信息

Harashima S, Miller A M, Tanaka K, Kusumoto K, Tanaka K, Mukai Y, Nasmyth K, Oshima Y

机构信息

Department of Fermentation Technology, Faculty of Engineering, Osaka University, Japan.

出版信息

Mol Cell Biol. 1989 Oct;9(10):4523-30. doi: 10.1128/mcb.9.10.4523-4530.1989.

Abstract

The alpha 2 protein, the product of the MAT alpha 2 cistron, represses various genes specific to the a mating type (alpha 2 repression), and when combined with the MATa1 gene product, it represses MAT alpha 1 and various haploid-specific genes (a1-alpha 2 repression). One target of a1-alpha 2 repression is RME1, which is a negative regulator of a/alpha-specific genes. We have isolated 13 recessive mutants whose a1-alpha 2 repression is defective but which retain alpha 2 repression in a genetic background of ho MATa HML alpha HMRa sir3 or ho MAT alpha HMRa HMRa sir3. These mutations can be divided into three different classes. One class contains a missense mutation, designated hml alpha 2-102, in the alpha 2 cistron of HML, and another class contains two mat alpha 2-202, in the MAT alpha locus. These three mutants each have an amino acid substitution of tyrosine or acid substitution of tyrosine or phenylalanine for cysteine at the 33rd codon from the translation initiation codon in the alpha 2 cistron of HML alpha or MAT alpha. The remaining 10 mutants make up the third class and form a single complementation group, having mutations designated aar1 (a1-alpha 2 repression), at a gene other than MAT, HML, HMR, RME1, or the four SIR genes. Although a diploid cell homozygous for the aarl and sir3 mutations and for the MATa, HML alpha, and HMRa alleles showed alpha mating type, it could sporulate and gave rise to asci containing four alpha mating-type spores. These facts indicate that the domain for alpha2 repression is separable from that for a1-alpha2 protein interaction or complex formation in the alpha2 protein and that an additional regulation gene, AAR1, is associated with the a1-alpha2 repression of the alpha1 cistron and haploid-specific genes.

摘要

α2蛋白是MATα2顺反子的产物,它可抑制多种与a交配型特异的基因(α2抑制),并且当与MATa1基因产物结合时,它会抑制MATα1和多种单倍体特异的基因(a1-α2抑制)。a1-α2抑制的一个靶标是RME1,它是a/α特异基因的负调控因子。我们分离出了13个隐性突变体,其a1-α2抑制存在缺陷,但在ho MATa HMLα HMRa sir3或ho MATα HMRa HMRa sir3的遗传背景下仍保留α2抑制。这些突变可分为三类。一类在HML的α2顺反子中含有一个错义突变,命名为hmlα2-102,另一类在MATα基因座中含有两个matα2-202。这三个突变体在HMLα或MATα的α2顺反子中,从翻译起始密码子起第33个密码子处,每个都有一个氨基酸取代,即半胱氨酸被酪氨酸或苯丙氨酸取代。其余10个突变体构成第三类,形成一个单一的互补群,其突变命名为aar1(a1-α2抑制),位于MAT、HML、HMR、RME1或四个SIR基因以外的一个基因上。虽然纯合aarl和sir3突变以及MATa、HMLα和HMRa等位基因的二倍体细胞表现为α交配型,但它能够形成孢子,并产生含有四个α交配型孢子的子囊。这些事实表明,α2抑制结构域在α2蛋白中可与a1-α2蛋白相互作用或复合物形成的结构域分离,并且一个额外的调控基因AAR1与α1顺反子和单倍体特异基因的a1-α2抑制相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/36e9/362537/41a89af9af90/molcellb00058-0420-a.jpg

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