首页> 外文期刊>Molecular Microbiology >Candida glabrata environmental stress response involves Saccharomyces cerevisiae Msn2/4 orthologous transcription factors.
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Candida glabrata environmental stress response involves Saccharomyces cerevisiae Msn2/4 orthologous transcription factors.

机译:光滑念珠菌环境应激反应涉及啤酒酵母Msn2 / 4直系同源转录因子。

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摘要

We determined the genome-wide environmental stress response (ESR) expression profile of Candida glabrata, a human pathogen related to Saccharomyces cerevisiae. Despite different habitats, C. glabrata, S. cerevisiae, Schizosaccharomyces pombe and Candida albicans have a qualitatively similar ESR. We investigate the function of the C. glabrata syntenic orthologues to the ESR transcription factor Msn2. The C. glabrata orthologues CgMsn2 and CgMsn4 contain a motif previously referred to as HD1 (homology domain 1) also present in Msn2 orthologues from fungi closely related to S. cerevisiae. We show that regions including this motif confer stress-regulated intracellular localization when expressed in S. cerevisiae. Site-directed mutagenesis confirms that nuclear export of CgMsn2 in C. glabrata requires an intact HD1. Transcript profiles of CgMsn2/4 mutants and CgMsn2 overexpression strains show that they regulate a part of the CgESR. CgMsn2 complements a S. cerevisiae msn2 null mutant and in stressed C. glabrata cells, rapidly translocates from the cytosol to the nucleus. CgMsn2 is required for full resistance against severe osmotic stress and rapid and full induction of trehalose synthesis genes (TPS1, TPS2). Constitutive activation of CgMsn2 is detrimental for C. glabrata. These results establish an Msn2-regulated general stress response in C. glabrata.
机译:我们确定了光滑念珠菌(一种与酿酒酵母有关的人类病原体)的全基因组环境应激反应(ESR)表达谱。尽管有不同的生境,但光滑小球藻,酿酒酵母,粟酒裂殖酵母和白色念珠菌的定性相似。我们调查功能的ES。转录因子Msn2的光滑念珠菌同系直系同源物。光滑念珠菌直系同源物CgMsn2和CgMsn4含有先前称为HD1(同源域1)的基序,该基序也存在于与酿酒酵母密切相关的真菌的Msn2直系同源物中。我们显示,包括该基序的区域在酿酒酵母中表达时赋予压力调节细胞内定位。定点诱变证实,C.glabrata中CgMsn2的核输出需要完整的HD1。 CgMsn2 / 4突变体和CgMsn2过表达菌株的转录本谱显示,它们调节CgESR的一部分。 CgMsn2与酿酒酵母msn2无效突变体互补,并且在应激的光滑小球藻细胞中快速从胞质溶胶转移到细胞核。 CgMsn2是完全抵抗严重的渗透压以及海藻糖合成基因(TPS1,TPS2)的快速和完全诱导所必需的。 CgMsn2的组成性激活对光滑念珠菌有害。这些结果建立了Cs glabrata Msn2调节的一般应激反应。

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