首页> 美国卫生研究院文献>G3: GenesGenomesGenetics >The CgHaa1-Regulon Mediates Response and Tolerance to Acetic Acid Stress in the Human Pathogen Candida glabrata
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The CgHaa1-Regulon Mediates Response and Tolerance to Acetic Acid Stress in the Human Pathogen Candida glabrata

机译:CgHaa1-Regulon介导人类病原性假丝酵母念珠菌对乙酸胁迫的响应和耐受性。

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摘要

To thrive in the acidic vaginal tract, Candida glabrata has to cope with high concentrations of acetic acid. The mechanisms underlying C. glabrata tolerance to acetic acid at low pH remain largely uncharacterized. In this work, the essential role of the CgHaa1 transcription factor (encoded by ORF CAGL0L09339g) in the response and tolerance of C. glabrata to acetic acid is demonstrated. Transcriptomic analysis showed that CgHaa1 regulates, directly or indirectly, the expression of about 75% of the genes activated under acetic acid stress. CgHaa1-activated targets are involved in multiple physiological functions including membrane transport, metabolism of carbohydrates and amino acids, regulation of the activity of the plasma membrane H+-ATPase, and adhesion. Under acetic acid stress, CgHaa1 increased the activity and the expression of the CgPma1 proton pump and contributed to increased colonization of vaginal epithelial cells by C. glabrata. CgHAA1, and two identified CgHaa1-activated targets, CgTPO3 and CgHSP30, are herein demonstrated to be determinants of C. glabrata tolerance to acetic acid. The protective effect of CgTpo3 and of CgHaa1 was linked to a role of these proteins in reducing the accumulation of acetic acid inside C. glabrata cells. In response to acetic acid stress, marked differences were found in the regulons controlled by CgHaa1 and by its S. cerevisiae ScHaa1 ortholog, demonstrating a clear divergent evolution of the two regulatory networks. The results gathered in this study significantly advance the understanding of the molecular mechanisms underlying the success of C. glabrata as a vaginal colonizer.
机译:为了在酸性阴道中壮成长,光滑念珠菌必须应对高浓度的乙酸。在低pH条件下,光滑念珠菌对乙酸具有耐受性的机理仍未完全阐明。在这项工作中,证明了CgHaa1转录因子(由ORF CAGL0L09339g编码)在光滑小球藻对乙酸的响应和耐受性中的重要作用。转录组分析显示,CgHaa1直接或间接调节在乙酸胁迫下激活的基因的约75%的表达。 CgHaa1激活的靶标涉及多种生理功能,包括膜运输,碳水化合物和氨基酸的代谢,质膜H + -ATPase活性的调节和粘附。在乙酸胁迫下,CgHaa1增强了CgPma1质子泵的活性和表达,并促进了光滑小球藻对阴道上皮细胞的定殖。 CgHAA1和两个已鉴定的CgHaa1活化靶标CgTPO3和CgHSP30在本文中证明是光滑小球藻对乙酸的耐受性的决定因素。 CgTpo3和CgHaa1的保护作用与这些蛋白质在减少光滑杯状线虫细胞内乙酸积累中的作用有关。响应于乙酸应激,在由CgHaa1和其酿酒酵母ScHaa1直系同源基因控制的调节子中发现了明显的差异,这表明两个调节网络明显不同的进化。这项研究中收集的结果极大地促进了对光滑念珠菌作为阴道定植者成功的分子机制的理解。

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