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pH Response Pathways in Fungi: Adapting to Host-derived and Environmental Signals

机译:真菌中的pH响应途径:适应宿主来源和环境信号

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摘要

Microorganisms are significantly affected when the ambient pH of their environment changes. They must therefore be able to sense and respond to these changes in order to survive. Previous investigators have studied various fungal species to define conserved pH-responsive signaling pathways. One of these pathways, known as the Pal/Rim pathway, is activated in response to alkaline pH signals, ultimately targeting the PacC/Rim101 transcription factor. Although the central signaling components are conserved among divergent filamentous and yeast-like fungi, there is some degree of signaling specificity between fungal species. This specificity exists primarily in the downstream transcriptional targets of this pathway, likely allowing differential adaptation to species-specific environmental niches. In this review, the role of the Pal/Rim pathway in fungal pH response is discussed. Also highlighted are functional differences present in this pathway among human fungal pathogens, differences that allow these specialized microorganisms to survive in the various micro-environments of the infected human host.
机译:当环境的环境pH值变化时,微生物会受到严重影响。因此,他们必须能够感知并应对这些变化,以便生存。以前的研究人员已经研究了各种真菌物种,以定义保守的pH响应信号传导途径。这些途径之一(称为Pal / Rim途径)响应碱性pH信号而被激活,最终靶向PacC / Rim101转录因子。尽管在不同的丝状和酵母样真菌中,中心信号成分是保守的,但真菌种类之间存在一定程度的信号特异性。这种特异性主要存在于该途径的下游转录靶标中,可能允许其对物种特异性环境生态位的差异适应。在这篇综述中,讨论了Pal / Rim途径在真菌pH反应中的作用。还突出显示了人类真菌病原体之间在该途径中存在的功能差异,这些差异使这些特殊的微生物能够在感染的人类宿主的各种微环境中生存。

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