首页> 外文OA文献 >Deletions of Endocytic Components VPS28 and VPS32 Affect Growth at Alkaline pH and Virulence through both RIM101-Dependent and RIM101-Independent Pathways in Candida albicans
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Deletions of Endocytic Components VPS28 and VPS32 Affect Growth at Alkaline pH and Virulence through both RIM101-Dependent and RIM101-Independent Pathways in Candida albicans

机译:内质组分VPS28和VPS32的缺失通过白色念珠菌的RIM101依赖性和RIM101依赖性途径影响碱性pH和毒力下的生长。

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摘要

Ambient pH signaling involves a cascade of conserved Rim or Pal products in ascomycetous yeasts or filamentous fungi, respectively. Recent evidences in the fungi Aspergillus nidulans, Saccharomyces cerevisiae, Yarrowia lipolytica, and Candida albicans suggested that components of endosomal sorting complexes required for transport (ESCRT) involved in endocytic trafficking were needed for signal transduction along the Rim pathway. In this study, we confirm these findings with C. albicans and show that Vps28p (ESCRT-I) and Vps32p/Snf7p (ESCRT-III) are required for the transcriptional regulation of known targets of the Rim pathway, such as the PHR1 and PHR2 genes encoding cell surface proteins, which are expressed at alkaline and acidic pH, respectively. We additionally show that deletion of these two VPS genes, particularly VPS32, has a more drastic effect than a RIM101 deletion on growth at alkaline pH and that this effect is only partially suppressed by expression of a constitutively active form of Rim101p. Finally, in an in vivo mouse model, both vps null mutants were significantly less virulent than a rim101 mutant, suggesting that VPS28 and VPS32 gene products affect virulence both through Rim-dependent and Rim-independent pathways.
机译:环境pH信号分别涉及子囊酵母或丝状真菌中级联的保守的Rim或Pal产物。在真菌曲霉,酿酒酵母,解脂耶氏酵母和白色念珠菌中的最新证据表明,参与内吞运输的运输所需内体分选复合物(ESCRT)的成分对于沿Rim途径的信号转导是必需的。在这项研究中,我们用白色念珠菌证实了这些发现,并显示了Rps途径的已知靶标(例如PHR1和PHR2)的转录调控需要Vps28p(ESCRT-I)和Vps32p / Snf7p(ESCRT-III)基因编码细胞表面蛋白,分别在碱性和酸性pH下表达。我们还显示,在碱性pH值下,这两个VPS基因(尤其是VPS32)的缺失比RIM101缺失对生长的影响更大,并且该影响仅被Rim101p的组成型活性形式表达部分抑制。最后,在体内小鼠模型中,两个vps null突变体的毒性都比rim101突变体低得多,这表明VPS28和VPS32基因产物通过Rim依赖性和Rim依赖性途径影响毒力。

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