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蛋白磷酸酶2C在酿酒酵母对锂毒性耐受性中的作用

Role of protein phosphatases 2C on tolerance to lithium toxicity in the yeast Saccharomyces cerevisiae.

作者信息

Ruiz Amparo, González Asier, García-Salcedo Raúl, Ramos José, Ariño Joaquín

机构信息

Departament de Bioquímica i Biologia Molecular, Universitat Autónoma de Barcelona, Bellaterra 08193, Barcelona, Spain.

出版信息

Mol Microbiol. 2006 Oct;62(1):263-77. doi: 10.1111/j.1365-2958.2006.05370.x. Epub 2006 Aug 31.

Abstract

Protein phosphatases 2C are a family of conserved enzymes involved in many aspects of the cell biology. We reported that, in the yeast Saccharomyces cerevisiae, overexpression of the Ptc3p isoform resulted in increased lithium tolerance in the hypersensitive hal3 background. We have found that the tolerance induced by PTC3 overexpression is also observed in wild-type cells and that this is most probably the result of increased expression of the ENA1 Na(+)-ATPase mediated by the Hog1 MAP kinase pathway. This effect does not require a catalytically active protein. Surprisingly, deletion of PTC3 (similarly to that of PTC2, PTC4 or PTC5) does not confer a lithium-sensitive phenotype, but mutation of PTC1 does. Lack of PTC1 in an ena1-4 background did not result in additive lithium sensitivity and the ptc1 mutant showed a decreased expression of the ENA1 gene in cells stressed with LiCl. In agreement, under these conditions, the ptc1 mutant was less effective in extruding Li(+) and accumulated higher concentrations of this cation. Deletion of PTC1 in a hal3 background did not exacerbate the halosensitive phenotype of the hal3 strain. In addition, induction from the ENA1 promoter under LiCl stress decreased similarly (50%) in hal3, ptc1 and ptc1 hal3 mutants. Finally, mutation of PTC1 virtually abolishes the increased tolerance to toxic cations provided by overexpression of Hal3p. These results indicate that Ptc1p modulates the function of Ena1p by regulating the Hal3/Ppz1,2 pathway. In conclusion, overexpression of PTC3 and lack of PTC1 affect lithium tolerance in yeast, although through different mechanisms.

摘要

蛋白磷酸酶2C是一类保守的酶,参与细胞生物学的许多方面。我们报道,在酿酒酵母中,Ptc3p亚型的过表达导致超敏hal3背景下锂耐受性增加。我们发现,在野生型细胞中也观察到PTC3过表达诱导的耐受性,这很可能是由Hog1 MAP激酶途径介导的ENA1钠-ATP酶表达增加的结果。这种效应不需要具有催化活性的蛋白质。令人惊讶的是,PTC3的缺失(类似于PTC2、PTC4或PTC5的缺失)不会赋予锂敏感表型,但PTC1的突变会。在ena1-4背景中缺乏PTC1不会导致锂敏感性增加,并且ptc1突变体在LiCl胁迫的细胞中ENA1基因的表达降低。与此一致,在这些条件下,ptc1突变体在排出锂离子方面效果较差,并且积累了更高浓度的这种阳离子。在hal3背景中缺失PTC1不会加剧hal3菌株的晕圈敏感表型。此外,在LiCl胁迫下,hal3、ptc1和ptc1 hal3突变体中ENA1启动子的诱导同样降低(50%)。最后,PTC1的突变几乎消除了Hal3p过表达提供的对有毒阳离子的耐受性增加。这些结果表明,Ptc1p通过调节Hal3/Ppz1,2途径来调节Ena1p的功能。总之,PTC3的过表达和PTC1的缺失影响酵母中的锂耐受性,尽管通过不同的机制。

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