Schizosaccharomyces pombe ehs1p参与维持细胞壁完整性和钙摄取。

E Carnero, J C Ribas, B García, A Durán, Y Sánchez
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引用次数: 38

摘要

分离出裂糖菌pombe突变体ehs1-1突变体,该突变体对棘白菌素和钙荧光白过敏,抑制细胞壁合成。突变体表现出在渗透稳定剂存在下被抑制的热敏生长表型。该突变体还表现出其他细胞壁相关表型,例如对酶促细胞壁降解的敏感性增强和多糖合成的不平衡。ehs1 +基因编码一种预测的完整膜蛋白,该蛋白与酿酒酵母Mid1p有30%的相同,后者被认为是钙通道的一部分。正如对这种功能的预期,我们发现ehs1+参与细胞内Ca2+积累。高外部Ca2+浓度抑制了与ehs1零突变相关的所有表型,这表明ehs1突变体的细胞完整性缺陷是由细胞中钙水平不足引起的。我们观察到ehs1+与蛋白激酶C同源物pck2+之间存在遗传关系。Pck2 +抑制ehs1-1突变细胞的所有表型。pck2p的过量产生对野生型细胞有害,增加1,3- β - d-葡聚糖合成酶活性,促进极高水平Ca2+的积累。与pck2p相关的致死率、1,3- β - d -葡聚糖合成酶产生的增加和强Ca2+积累都依赖于ehs1p的存在。我们的研究结果表明,在分裂酵母中,ehs1p形成钙通道的一部分,该通道参与细胞壁完整性途径,包括激酶pck2p。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Schizosaccharomyces pombe ehs1p is involved in maintaining cell wall integrity and in calcium uptake.

The Schizosaccharomyces pombe mutant ehs1-1 mutant was isolated on the basis of its hypersensitivity to Echinocandin and Calcofluor White, which inhibit cell wall synthesis. The mutant shows a thermosensitive growth phenotype that is suppressed in the presence of an osmotic stabiliser. The mutant also showed other cell wall-associated phenotypes, such as enhanced sensitivity to enzymatic cell wall degradation and an imbalance in polysaccharide synthesis. The ehs1 + gene encodes a predicted integral membrane protein that is 30% identical to Saccharomyces cerevisiae Mid1p, a protein that has been proposed to form part of a calcium channel. As expected for such a function, we found that ehs1+ is involved in intracellular Ca2+ accumulation. High external Ca2+ concentrations suppressed all phenotypes associated with the ehs1 null mutation, suggesting that the cell integrity defects of ehs1 mutants result from inadequate levels of calcium in the cell. We observed a genetic relationship between ehs1+ and the protein kinase C homologue pck2+. pck2+ suppressed all phenotypes of ehs1-1 mutant cells. Overproduction of pck2p is deleterious to wild-type cells, increasing 1,3-beta-D-glucan synthase activity and promoting accumulation of extremely high levels of Ca2+. The lethality associated with pck2p, the increase in 1,3-beta-D-glucan synthase production and the strong Ca2+ accumulation are all dependent on the presence of ehs1p. Our results suggest that in fission yeast ehs1p forms part of a calcium channel that is involved in the cell wall integrity pathway that includes the kinase pck2p.

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