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Candida albicans Rim13p a Protease Required for Rim101p Processing at Acidic and Alkaline pHs

机译:白色念珠菌Rim13p在酸性和碱性pH下Rim101p加工所需的蛋白酶

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摘要

Candida albicans is an important commensal of mucosal surfaces that is also an opportunistic pathogen. This organism colonizes a wide range of host sites that differ in pH; thus, it must respond appropriately to this environmental stress to survive. The ability to respond to neutral-to-alkaline pHs is governed in part by the RIM101 signal transduction pathway. Here we describe the analysis of C. albicans Rim13p, a homolog of the Rim13p/PalB calpain-like protease member of the RIM101/pacC pathway from Saccharomyces cerevisiae and Aspergillus nidulans, respectively. RIM13, like other members of the RIM101 pathway, is required for alkaline pH-induced filamentation and growth under extreme alkaline conditions. Further, our studies suggest that the RIM101 pathway promotes pH-independent responses, including resistance to high concentrations of lithium and to the drug hygromycin B. RIM13 encodes a calpain-like protease, and we found that Rim101p undergoes a Rim13p-dependent C-terminal proteolytic processing event at neutral-to-alkaline pHs, similar to that reported for S. cerevisiae Rim101p and A. nidulans PacC. However, we present evidence that suggests that C. albicans Rim101p undergoes a novel processing event at acidic pHs that has not been reported in either S. cerevisiae or A. nidulans. Thus, our results provide a framework to understand how the C. albicans Rim101p processing pathway promotes alkaline pH-independent processes.
机译:白色念珠菌是粘膜表面的重要标志,也是机会病原体。这种生物在许多不同pH的宿主位点定殖。因此,它必须对这种环境压力做出适当的反应才能生存。响应中性至碱性pH值的能力部分受RIM101信号转导途径的控制。在这里,我们描述了对白色念珠菌Rim13p的分析,白色念珠菌Rim13p是来自酿酒酵母和构巢曲霉的RIM101 / pacC途径的Rim13p / PalB钙蛋白酶样蛋白酶成员的同源物。与RIM101途径的其他成员一样,RIM13对于碱性pH诱导的丝化和在极端碱性条件下的生长也是必需的。此外,我们的研究表明,RIM101途径可促进pH依赖性反应,包括对高浓度锂和潮霉素B的抗性。RIM13编码钙蛋白酶样蛋白酶,并且我们发现Rim101p经历了Rim13p依赖性C末端在中性至碱性pH值下发生蛋白水解加工事件,类似于酿酒酵母Rim101p和构巢曲霉PacC的报道。但是,我们目前的证据表明,白色念珠菌Rim101p在酸性pH下经历了一种新的加工事件,而酿酒酵母或构巢曲霉均未见报道。因此,我们的结果提供了一个了解C的框架。 Albicans Rim101p的加工途径促进了pH无关的碱性过程。

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