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首页> 外文期刊>Eukaryotic cell >The Hog1 Mitogen-Activated Protein Kinase Is Essential in the Oxidative Stress Response and Chlamydospore Formation in Candida albicans
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The Hog1 Mitogen-Activated Protein Kinase Is Essential in the Oxidative Stress Response and Chlamydospore Formation in Candida albicans

机译:Hog1丝裂原激活的蛋白激酶在白色念珠菌的氧化应激反应和衣原体形成中至关重要。

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Candida albicans mutants with mutations in mitogen-activated protein (MAP) kinase HOG1 displayed an increased sensitivity to agents producing reactive oxygen species, such as oxidants (menadione, hydrogen peroxide, or potassium superoxide), and UV light. Consistent with this finding, C. albicans Hog1 was activated not only in response to an increase in external osmolarity, as happens with its Saccharomyces cerevisiae homologue, but also in response to hydrogen peroxide. The Hog1-mediated response to oxidative stress was different from that of transcription factor Cap1, the homologue of S. cerevisiae Yap1, as shown by the different sensitivities to oxidants and the kinetics of cell death of cap1Δ, hog1, and hog1 cap1Δ mutants. Deletion of CAP1 did not influence the level of Hog1 phosphorylation, and deletion of HOG1 did not affect Cap1 nuclear localization. Moreover, we show that the HOG1 gene plays a role in chlamydospore formation, another oxygen-related morphogenetic event, as demonstrated by the fact that hog1 cells were unable to generate these thick-walled structures in several media through a mechanism different from that of the EFG1 regulator. This is the first demonstration of the role of the Hog1-mediated MAP kinase pathway in resistance to oxidative stress in pathogenic fungi, and it allows us to propose a molecular model for the oxidative stress response in C. albicans.
机译:丝裂原活化蛋白(MAP)激酶 HOG1 突变的 Candida 白色念珠突变体对产生活性氧的物质(例如氧化剂)的敏感性提高(甲萘醌,过氧化氢或超氧化钾)和紫外线。与此发现一致, C 白色念珠 Hog1的激活不仅响应外部渗透压的增加(如其酿酒酵母 酿酒酵母同源物),而且还响应氢过氧化物。 Hog1介导的对氧化应激的响应不同于转录因子Cap1( S 的同源物)的响应。 cerevisiae Yap1,如对氧化剂的敏感性不同以及 cap1 Δ, hog1 hog1 < / em> cap1 Δ突变体。 CAP1 的缺失不影响Hog1磷酸化的水平, HOG1 的缺失不影响Cap1的核定位。此外,我们显示 HOG1 基因在衣原体孢子的形成中起作用,衣原体孢子是另一种与氧气有关的形态发生事件,这一事实证明了 hog1 细胞无法产生这些厚通过与 EFG1 调节器不同的机制在多种介质中形成壁结构。这是Hog1介导的MAP激酶途径在致病性真菌对氧化应激的抗性中的作用的第一个证明,它使我们能够提出 C 中氧化应激反应的分子模型。 白色的人

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