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UME6, a novel filament-specific regulator of Candida albicans hyphal extension and virulence

机译:UME6,白色念珠菌菌丝延伸和毒力的新型细丝特异性调节剂

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摘要

The specific ability of the major human fungal pathogen Candida albicans, as well as many other pathogenic fungi, to extend initial short filaments ( germ tubes) into elongated hyphal filaments is important for a variety of virulence-related processes. However, the molecular mechanisms that control hyphal extension have remained poorly understood for many years. We report the identification of a novel C. albicans transcriptional regulator, UME6, which is induced in response to multiple host environmental cues and is specifically important for hyphal extension. Although capable of forming germ tubes, the ume6 Delta/ume6 Delta mutant exhibits a clear defect in hyphal extension both in vitro and during infection in vivo and is attenuated for virulence in a mouse model of systemic candidiasis. We also show that UME6 is an important downstream component of both the RFG1-TUP1 and NRG1-TUP1 filamentous growth regulatory pathways, and we provide evidence to suggest that Nrg1 and Ume6 function together by a negative feedback loop to control the level and duration of filament-specific gene expression in response to inducing conditions. Our results suggest that hyphal extension is controlled by a specific transcriptional regulatory mechanism and is correlated with the maintenance of high-level expression of genes in the C. albicans filamentous growth program.
机译:主要人类真菌病原体白色念珠菌以及许多其他病原真菌将初始短丝(胚芽管)延伸成细长的菌丝细丝的特定能力对于各种与毒力相关的过程很重要。但是,控制菌丝延伸的分子机制多年来一直知之甚少。我们报告鉴定一种新型的白色念珠菌转录调节剂,UME6,这是对多种宿主环境线索的响应而诱导的,对于菌丝延伸特别重要。尽管能够形成胚芽管,但ume6 Delta / ume6 Delta突变体在体外和体内感染过程中均表现出明显的菌丝延伸缺陷,并且在全身性念珠菌病小鼠模型中的毒力减弱。我们还表明,UME6是RFG1-TUP1和NRG1-TUP1丝状生长调节途径的重要下游组成部分,并且我们提供证据表明Nrg1和Ume6通过负反馈回路共同控制丝的水平和持续时间。诱导条件下的特异性基因表达。我们的结果表明,菌丝延伸受特定的转录调控机制控制,并且与白色念珠菌丝状生长程序中基因的高水平表达保持相关。

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