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Candida albicans-Conditioned Medium Protects Yeast Cells from Oxidative Stress: a Possible Link between Quorum Sensing and Oxidative Stress Resistance

机译:白色念珠菌培养液可保护酵母细胞免受氧化应激:群体感应与抗氧化应激之间的可能联系

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Candida albicans, the most frequent fungal pathogen of humans, encounters high levels of oxidants following ingestion by professional phagocytes and through contact with hydrogen peroxide-producing bacteria. In this study, we provide evidence that C. albicans is able to coordinately regulate the oxidative stress response at the global cell population level by releasing protective molecules into the surrounding medium. We demonstrate that conditioned medium, which is defined as a filter-sterilized supernatant from a C. albicans stationary-phase culture, is able to protect yeast cells from both hydrogen peroxide and superoxide anion-generating agents. Exponential-phase yeast cells preexposed to conditioned medium were able to survive levels of oxidative stress that would normally kill actively growing yeast cells. Heat treatment, digestion with proteinase K, pH adjustment, or the addition of the oxidant scavenger alpha-tocopherol did not alter the ability of conditioned medium to induce a protective response. Farnesol, a heat-stable quorum-sensing molecule (QSM) that is insensitive to proteolytic enzymes and is unaffected by pH extremes, is partly responsible for this protective response. In contrast, the QSM tyrosol did not alter the sensitivity of C. albicans cells to oxidants. Relative reverse transcription-PCR analysis indicates that Candida-conditioned growth medium induces the expression of CAT1, SOD1, SOD2, and SOD4, suggesting that protection may be mediated through the transcriptional regulation of antioxidant-encoding genes. Together, these data suggest a link between the quorum-sensing molecule farnesol and the oxidative stress response in C. albicans.
机译:白色念珠菌(Candida albicans)是人类最常见的真菌病原体,在被专业吞噬细胞摄入并与产生过氧化氢的细菌接触后,会遇到高水平的氧化剂。在这项研究中,我们提供了 C的证据。白色念珠菌通过释放保护性分子到周围介质中,能够在全球细胞群体水平上协调调节氧化应激反应。我们证明了条件培养基,其定义为来自 C的过滤器灭菌的上清液。白色念珠菌固定相培养能够保护酵母细胞免受过氧化氢和超氧化物阴离子生成剂的侵害。预先暴露在条件培养基中的指数相酵母细胞能够抵抗通常会杀死活跃生长的酵母细胞的氧化应激水平。热处理,蛋白酶K消化,pH调节或添加氧化剂清除剂α-生育酚均不会改变条件培养基诱导保护性反应的能力。 Farnesol是一种热稳定的群体感应分子(QSM),对蛋白水解酶不敏感,不受pH极端值的影响,部分原因是这种保护作用。相反,QSM酪醇不会改变C的敏感性。白色念珠菌细胞产生氧化剂。相对逆转录-PCR分析表明, Candida-条件生长培养基诱导 CAT1 SOD1 SOD2 的表达和 SOD4 ,表明保护作用可能是通过抗氧化剂编码基因的转录调控来介导的。总之,这些数据表明群体感应分子法尼醇和 C中的氧化应激反应之间存在联系。白色的

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