[Cloning and functional study of CaPPe1 in Candida albicans by using Saccharomyses cerevisiae model system].

Shi yan sheng wu xue bao Pub Date : 2005-04-01
Fang Cao, Jiang Ye Chen
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Abstract

The dimorphic transition of yeast and hyphal forms is one of most determinants in Candida albicans for its pathogenicity. This transition is regulated by several signal transduction pathways. Transcriptional factor Flo8 plays an important role in morphogenesis of Saccharomyces cerevisiae. In this work, a C. albicans genomic DNA library was introduced into a S. cerevisiae flo8/flo8 mutant and genes which could suppress invasive growth defect were isolated. A novel gene was isolated and designated CaPPE1 (Candida albicans PPE1 gene). CaPPE1 encoded for a 361 amino acid protein CaPpe1, shared highest similarity in amino acids (35% identity) with the protein phosphatase methylesterase Ppel of S. cerevisiae. In haploid of S. cerevisiae, ectopic expressed CaPPE1 could partially suppress the invasive growth defect of the flo8 mutant but failed to suppressed the invasive growth defects of the mutants in MAPK pathway(ste12/ste12 and tec1/ tecl). Ectopic expression of the CaPPE1 in diploid of S. cerevisiae suppress the filamentous growth defect of some mutants in MAPK pathway, but not in flo8/flo8 mutant under nitrogen starvation condition. It is suggested that CaPpe1 may be involved in different regulating pathways in diploid filamentous growth and in haploid invasive growth.

[利用酿酒酵母菌模型系统克隆白色念珠菌CaPPe1及其功能研究]。
酵母和菌丝形式的二态转变是白色念珠菌致病性的最决定因素之一。这种转变受几种信号转导途径的调节。转录因子Flo8在酿酒酵母的形态发生中起着重要作用。本研究将白色念珠菌基因组DNA文库导入酿酒葡萄球菌flo8/flo8突变体,分离出抑制侵袭性生长缺陷的基因。分离到一个新的基因,命名为CaPPE1(白色念珠菌PPE1基因)。CaPPE1编码361个氨基酸的蛋白CaPPE1,与酿酒酵母的蛋白磷酸酶甲基酯酶Ppel在氨基酸上具有最高的相似性(35%的同源性)。在酿酒酵母单倍体中,异位表达CaPPE1可以部分抑制flo8突变体的侵袭性生长缺陷,但不能抑制MAPK通路(ste12/ste12和tec1/ tecl)突变体的侵袭性生长缺陷。CaPPE1在酿酒酵母二倍体中的异位表达抑制了MAPK通路中部分突变体的丝状生长缺陷,而在氮饥饿条件下,对flo8/flo8突变体无抑制作用。提示CaPpe1可能参与了二倍体丝状生长和单倍体侵袭性生长的不同调控途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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