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酿酒酵母cak1P212S和cla4突变体的超极化生长会削弱细胞壁,并使细胞依赖几丁质合成酶3。

Hyperpolarized growth of Saccharomyces cerevisiae cak1P212S and cla4 mutants weakens cell walls and renders cells dependent on chitin synthase 3.

作者信息

Schmidt Martin, Drgon Tomas, Bowers Blair, Cabib Enrico

机构信息

Department of Biochemistry and Nutrition, Des Moines University, Des Moines, IA 50311, USA.

出版信息

FEMS Yeast Res. 2008 May;8(3):362-73. doi: 10.1111/j.1567-1364.2008.00368.x. Epub 2008 Mar 27.

Abstract

In a screen for cell wall defects in Saccharomyces cerevisiae, we isolated a strain carrying a mutation in the Cdc28-activating kinase CAK1. The cak1P212S mutant cells exhibit multiple, elongated and branched buds, beta(1,3)glucan-poor regions of the cell periphery and lysed upon osmotic shock after treatment with the chitin synthase III inhibitor Nikkomycin Z. Ultrastructural examination of cak1P212S mutants revealed a thin, uneven cell wall and marked abnormalities in septum formation. In all of the above aspects, the cak1P212S mutants are similar to previously described cla4 mutants, suggesting that the cell wall defects are common to mutants with hyperpolarized growth. In cak1P212S mutants, chitin accumulates all over the surface of the cells and glucan synthase activity is located preferentially to the tips of elongated buds. We conclude that the cell wall weakness in cak1P212S mutants is caused by hyperpolarized secretion of glucan synthase and lack of reinforcement of the lateral cell walls. Showing that the defect depends at least in part on Cdc28, the cak1P212S hyperpolarized growth phenotype can be suppressed by a Cak1-independent Cdc28-allele. The results underline the importance of a minor cell wall component, the chitin of lateral walls, for the integrity of the cell in a stress situation.

摘要

在一项针对酿酒酵母细胞壁缺陷的筛选中,我们分离出了一株在Cdc28激活激酶CAK1中携带突变的菌株。cak1P212S突变体细胞呈现出多个细长且分支的芽、细胞周边β(1,3)葡聚糖含量低的区域,并且在用几丁质合酶III抑制剂尼克霉素Z处理后,经渗透压冲击会裂解。对cak1P212S突变体的超微结构检查显示,其细胞壁薄且不均匀,隔膜形成存在明显异常。在上述所有方面,cak1P212S突变体与先前描述的cla4突变体相似,这表明细胞壁缺陷在生长超极化的突变体中是常见的。在cak1P212S突变体中,几丁质在细胞表面各处积累,葡聚糖合酶活性优先定位于细长芽的尖端。我们得出结论,cak1P212S突变体中的细胞壁薄弱是由葡聚糖合酶的超极化分泌以及侧壁缺乏加固所致。cak1P212S的超极化生长表型可被一个不依赖Cak1的Cdc28等位基因抑制,这表明该缺陷至少部分取决于Cdc28。这些结果强调了一种次要的细胞壁成分——侧壁几丁质,在应激情况下对细胞完整性的重要性。

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