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Fungal Skn7 Stress Responses and Their Relationship to Virulence

机译:真菌Skn7应激反应及其与毒力的关系

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The histidine kinase-based phosphorelay has emerged as a common strategy among bacteria, fungi, protozoa, and plants for triggering important stress responses and interpreting developmental cues in response to environmental as well as chemical, nutritional, and hormone signals. The absence of this type of signaling mechanism in animals makes the so-called “two-component” pathway an attractive target for development of antimicrobial agents. The best-studied eukaryotic example of a two-component pathway is the SLN1 pathway in Saccharomyces cerevisiae, which responds to turgor and other physical properties associated with the fungal cell wall. One of the two phosphoreceiver proteins known as response regulators in this pathway is Skn7, a highly conserved stress-responsive transcription factor with a subset of activities that are dependent on SLN1 pathway phosphorylation and another subset that are independent. Interest in Skn7as a determinant in fungal virulence stems primarily from its well-established role in the oxidative stress response; however, the involvement of Skn7 in maintenance of cell wall integrity may also be relevant. Since the cell wall is crucial for fungal survival, structural and biosynthetic proteins affecting wall composition and signaling pathways that respond to wall stress are likely to play key roles in virulence. Here we review the molecular and phenotypic characteristics of different fungal Skn7 proteins and consider how each of these properties may contribute to fungal virulence.
机译:基于组氨酸激酶的磷酸化已成为细菌,真菌,原生动物和植物之间的一种常见策略,用于触发重要的应激反应并解释对环境以及化学,营养和激素信号的反应。动物中缺乏这种信号传导机制,使得所谓的“双组分”途径成为开发抗菌剂的有吸引力的目标。研究最深入的两组分途径真核生物实例是酿酒酵母中的SLN1途径,该途径可响应膨松和与真菌细胞壁相关的其他物理特性。 Skn7是该途径中称为响应调节剂的两种磷酸受体蛋白之一,Skn7是高度保守的应激响应转录因子,其活性子集依赖于SLN1途径的磷酸化,而另一子集是独立的。对Skn7作为真菌毒力决定因素的兴趣主要来自其在氧化应激反应中已确立的作用。然而,Skn7参与维持细胞壁完整性也可能是相关的。由于细胞壁对于真菌存活至关重要,因此影响壁组成的结构和生物合成蛋白以及响应壁压力的信号传导途径可能在毒力中起关键作用。在这里,我们审查了不同的真菌Skn7蛋白的分子和表型特征,并考虑了这些特性中的每一个如何对真菌的毒力起作用。

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