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Hyphal Guidance and Invasive Growth in Candida albicans Require the Ras-Like GTPase Rsr1p and Its GTPase-Activating Protein Bud2p

机译:白色念珠菌的菌丝引导和侵袭性生长需要类似Ras的GTPase Rsr1p及其GTPase激活蛋白Bud2p

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摘要

Candida albicans, the most prevalent fungal pathogen of humans, causes superficial mycoses, invasive mucosal infections, and disseminated systemic disease. Many studies have shown an intriguing association between C. albicans morphogenesis and the pathogenesis process. For example, hyphal cells have been observed to penetrate host epithelial cells at sites of wounds and between cell junctions. Ras- and Rho-type GTPases regulate many morphogenetic processes in eukaryotes, including polarity establishment, cell proliferation, and directed growth in response to extracellular stimuli. We found that the C. albicans Ras-like GTPase Rsr1p and its predicted GTPase-activating protein Bud2p localized to the cell cortex, at sites of incipient daughter cell growth, and provided landmarks for the positioning of daughter yeast cells and hyphal cell branches, similar to the paradigm in the model yeast Saccharomyces cerevisiae. However, in contrast to S. cerevisiae, CaRsr1p and CaBud2p were important for morphogenesis: C. albicans strains lacking Rsr1p or Bud2p had abnormal yeast and hyphal cell shapes and frequent bends and promiscuous branching along the hypha and were unable to invade agar. These defects were associated with abnormal actin patch polarization, unstable polarisome localization at hyphal tips, and mislocalized septin rings, consistent with the idea that GTP cycling of Rsr1p stabilizes the axis of polarity primarily to a single focus, thus ensuring normal cell shape and a focused direction of polarized growth. We conclude that the Rsr1p GTPase functions as a polarity landmark for hyphal guidance and may be an important mediator of extracellular signals during processes such as host invasion.
机译:白色念珠菌是人类最普遍的真菌病原体,可引起浅表真菌病,侵袭性粘膜感染和全身性疾病。许多研究表明,白色念珠菌的形态发生与发病过程之间存在着令人着迷的关联。例如,已经观察到菌丝细胞在伤口部位和细胞接头之间穿透宿主上皮细胞。 Ras和Rho型GTPases调节真核生物中的许多形态发生过程,包括极性建立,细胞增殖和响应细胞外刺激的定向生长。我们发现白色念珠菌Ras样GTPase Rsr1p及其预测的GTPase活化蛋白Bud2p定位于细胞皮层,在子代细胞生长的初始位置,并为子代酵母细胞和菌丝细胞分支的定位提供了标志。以酵母酵母菌为例。然而,与酿酒酵母相反,CaRsr1p和CaBud2p对形态发生很重要:缺少Rsr1p或Bud2p的白色念珠菌菌株具有异常的酵母和菌丝细胞形状,并经常沿菌丝弯曲和混杂分支,无法侵袭琼脂。这些缺陷与异常的肌动蛋白斑块极化,菌丝尖端的不稳定的极化体定位以及定位错误的Septin环有关,这与认为Rsr1p的GTP循环主要将极性轴稳定在单个焦点上的想法一致,从而确保正常的细胞形状和聚焦极化增长的方向。我们得出的结论是Rsr1p GTPase充当菌丝引导的极性界标,并且在宿主入侵等过程中可能是细胞外信号的重要介体。

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