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编码高尔基体膜ATP酶的PMR1基因突变的分离与鉴定,该突变导致酿酒酵母对Clb3过表达超敏。

Isolation and characterisation of a mutation in the PMR1 gene encoding a Golgi membrane ATPase, which causes hypersensitivity to over-expression of Clb3 in Saccharomyces cerevisiae.

作者信息

Funakoshi M, Kajiwara R, Goda T, Nishimoto T, Kobayashi H

机构信息

Department of Molecular Biology, Graduate School of Medical Science, Kyushu University, Japan.

出版信息

Mol Gen Genet. 2000 Sep;264(1-2):29-36. doi: 10.1007/s004380000300.

DOI:10.1007/s004380000300
PMID:11016830
Abstract

We screened for mutant strains of Saccharomyces cerevisiae that are sensitive to overexpression of specific cyclins, and identified mutations in two genes that caused growth inhibition in response to mild overexpression of Clb3. One was the ANP1 gene, which encodes a glycosyltransferase previously identified by a similar strategy using Clb2 instead of Clb3. This paper describes the second strain of S. cerevisiae that is hypersensitive to Clb3 expression. The gene mutated in this strain was identified as PMR1, which encodes a Ca2+-ATPase located in the Golgi membrane. The protein product of pmr1-1 was truncated at residue 409 and thus lacked the C-terminal ATPase domain. The pmr1-1 strain was hypersensitive to over-expression of Clb3, but not Cln2, Clb5 or Clb2. The lethality due to Clb3 expression in pmr1-1 could be suppressed by adding Ca2+ ions to the medium. The pmr1-1 strain proved to be defective in glycosylation, and the defects in glycosylation were exacerbated by high levels of Clb3. On induction of Clb3 expression in the pmr1-1 strain, the cells arrested at anaphase with an elongated daughter bud. We discuss possible interpretations of this synthetic lethal phenotype.

摘要

我们筛选了对特定细胞周期蛋白过表达敏感的酿酒酵母突变株,并鉴定出两个基因中的突变,这些突变在Clb3轻度过表达时会导致生长抑制。其中一个是ANP1基因,它编码一种糖基转移酶,之前通过使用Clb2而非Clb3的类似策略已被鉴定出来。本文描述了对Clb3表达高度敏感的第二株酿酒酵母。该菌株中发生突变的基因被鉴定为PMR1,它编码一种位于高尔基体膜上的Ca2+ -ATP酶。pmr1 - 1的蛋白质产物在第409位残基处被截断,因此缺少C端ATP酶结构域。pmr1 - 1菌株对Clb3的过表达高度敏感,但对Cln2、Clb5或Clb2不敏感。通过向培养基中添加Ca2+离子,可以抑制pmr1 - 1中因Clb3表达导致的致死性。事实证明,pmr1 - 1菌株在糖基化方面存在缺陷,并且高水平的Clb3会加剧糖基化缺陷。在pmr1 - 1菌株中诱导Clb3表达时,细胞会在后期停滞,子芽伸长。我们讨论了这种合成致死表型的可能解释。

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