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首页> 外文期刊>Frontiers in Microbiology >The Candida albicans Pho4 Transcription Factor Mediates Susceptibility to Stress and Influences Fitness in a Mouse Commensalism Model
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The Candida albicans Pho4 Transcription Factor Mediates Susceptibility to Stress and Influences Fitness in a Mouse Commensalism Model

机译:白色念珠菌 Pho4转录因子介导小鼠易感性模型的应激易感性并影响其适应性

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The Pho4 transcription factor is required for growth under low environmental phosphate concentrations in Saccharomyces cerevisiae . A characterization of Candida albicans pho4 mutants revealed that these cells are more susceptible to both osmotic and oxidative stress and that this effect is diminished in the presence of 5% CO_(2)or anaerobiosis, reflecting the relevance of oxygen metabolism in the Pho4-mediated response. A pho4 mutant was as virulent as wild type strain when assayed in the Galleria mellonella infection model and was even more resistant to murine macrophages in ex vivo killing assays. The lack of Pho4 neither impairs the ability to colonize the murine gut nor alters the localization in the gastrointestinal tract. However, we found that Pho4 influenced the colonization of C. albicans in the mouse gut in competition assays; pho4 mutants were unable to attain high colonization levels when inoculated simultaneously with an isogenic wild type strain. Moreover, pho4 mutants displayed a reduced adherence to the intestinal mucosa in a competitive ex vivo assays with wild type cells. In vitro competitive assays also revealed defects in fitness for this mutant compared to the wild type strain. Thus, Pho4, a transcription factor involved in phosphate metabolism, is required for adaptation to stress and fitness in C. albicans .
机译:在酿酒酵母中低环境磷酸盐浓度下生长需要Pho4转录因子。对白色念珠菌pho4突变体的表征表明,这些细胞对渗透压和氧化应激均更敏感,并且在5%CO_(2)或厌氧菌存在下这种作用减弱,反映了Pho4介导的氧代谢的相关性响应。当在梅勒埃勒菌感染模型中进行测定时,pho4突变体的毒性与野生型菌株相同,并且在离体杀伤试验中对鼠类巨噬细胞的耐药性更高。 Pho4的缺乏既不会损害鼠肠道定殖的能力,也不会改变其在胃肠道中的定位。但是,我们发现在竞争试验中,Pho4影响了白色念珠菌在小鼠肠道中的定殖。当与同基因野生型菌株同时接种时,pho4突变体无法达到高定植水平。而且,在与野生型细胞的竞争性离体测定中,pho4突变体显示出对肠粘膜的粘附减少。与野生型菌株相比,体外竞争试验还揭示了该突变体的适应性缺陷。因此,Pho4是参与磷酸盐代谢的转录因子,是适应白色念珠菌的压力和适应性所必需的。

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