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在白念珠菌中,Hog1 应激激活蛋白激酶的 MAPKKK 非依赖性调节。

MAPKKK-independent regulation of the Hog1 stress-activated protein kinase in Candida albicans.

机构信息

Institute for Cell and Molecular Biosciences, Faculty of Medicine, Newcastle University, Newcastle upon Tyne, NE2 4HH, United Kingdom.

Aberdeen Fungal Group, Institute of Medical Sciences, University of Aberdeen, Aberdeen AB25 2ZD, United Kingdom.

出版信息

J Biol Chem. 2011 Dec 9;286(49):42002-42016. doi: 10.1074/jbc.M111.265231. Epub 2011 Oct 12.

Abstract

The Hog1 stress-activated protein kinase regulates both stress responses and morphogenesis in Candida albicans and is essential for the virulence of this major human pathogen. Stress-induced Hog1 phosphorylation is regulated by the upstream MAPKK, Pbs2, which in turn is regulated by the MAPKKK, Ssk2. Here, we have investigated the role of phosphorylation of Hog1 and Pbs2 in Hog1-mediated processes in C. albicans. Mutation of the consensus regulatory phosphorylation sites of Hog1 (Thr-174/Tyr-176) and Pbs2 (Ser-355/Thr-359), to nonphosphorylatable residues, resulted in strains that phenocopied hog1Δ and pbs2Δ cells. Consistent with this, stress-induced phosphorylation of Hog1 was abolished in cells expressing nonphosphorylatable Pbs2 (Pbs2(AA)). However, mutation of the consensus sites of Pbs2 to phosphomimetic residues (Pbs2(DD)) failed to constitutively activate Hog1. Furthermore, Ssk2-independent stress-induced Hog1 activation was observed in Pbs2(DD) cells. Collectively, these data reveal a previously uncharacterized MAPKKK-independent mechanism of Hog1 activation in response to stress. Although Pbs2(DD) cells did not exhibit high basal levels of Hog1 phosphorylation, overexpression of an N-terminal truncated form of Ssk2 did result in constitutive Hog1 activation, which was further increased upon stress. Significantly, both Pbs2(AA) and Pbs2(DD) cells displayed impaired stress resistance and attenuated virulence in a mouse model of disease, whereas only Pbs2(AA) cells exhibited the morphological defects associated with loss of Hog1 function. This indicates that Hog1 mediates C. albicans virulence by conferring stress resistance rather than regulating morphogenesis.

摘要

Hog1 应激激活蛋白激酶调节白色念珠菌的应激反应和形态发生,是这种主要人类病原体毒力所必需的。应激诱导的 Hog1 磷酸化受上游 MAPKK Pbs2 调节,而 Pbs2 又受 MAPKKK Ssk2 调节。在这里,我们研究了 Hog1 和 Pbs2 磷酸化在白色念珠菌中 Hog1 介导的过程中的作用。将 Hog1(Thr-174/Tyr-176)和 Pbs2(Ser-355/Thr-359)的保守调节磷酸化位点突变为非磷酸化残基,导致表型类似于 hog1Δ 和 pbs2Δ 细胞的菌株。与此一致,表达非磷酸化 Pbs2(Pbs2(AA))的细胞中应激诱导的 Hog1 磷酸化被消除。然而,将 Pbs2 的保守磷酸化位点突变为磷酸模拟残基(Pbs2(DD))未能使 Hog1 持续激活。此外,在 Pbs2(DD)细胞中观察到 Ssk2 非依赖性应激诱导的 Hog1 激活。总之,这些数据揭示了一种以前未被描述的应激诱导 Hog1 激活的 MAPKKK 非依赖性机制。虽然 Pbs2(DD)细胞没有表现出 Hog1 磷酸化的高基础水平,但过表达 N 端截断形式的 Ssk2 确实导致了 Hog1 的持续激活,而应激后进一步增加。重要的是,Pbs2(AA)和 Pbs2(DD)细胞在疾病的小鼠模型中均表现出应激抵抗能力受损和毒力减弱,而只有 Pbs2(AA)细胞表现出与 Hog1 功能丧失相关的形态缺陷。这表明 Hog1 通过赋予应激抵抗而不是调节形态发生来介导白色念珠菌的毒力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3726/3234903/b635140ec93f/zbc0521188910001.jpg

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