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Regulation of Gene Expression by Ambient pH in Filamentous Fungi and Yeasts

机译:pH值对丝状真菌和酵母中环境表达的调控

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摘要

Life, as we know it, is water based. Exposure to hydroxonium and hydroxide ions is constant and ubiquitous, and the evolutionary pressure to respond appropriately to these ions is likely to be intense. Fungi respond to their environments by tailoring their output of activities destined for the cell surface or beyond to the ambient pH. We are beginning to glimpse how they sense ambient pH and transmit this information to the transcription factor, whose roles ensure that a suitable collection of gene products will be made. Although relatively little is known about pH signal transduction itself, its consequences for the cognate transcription factor are much clearer. Intriguingly, homologues of components of this system mediating the regulation of fungal gene expression by ambient pH are to be found in the animal kingdom. The potential applied importance of this regulatory system lies in its key role in fungal pathogenicity of animals and plants and in its control of fungal production of toxins, antibiotics, and secreted enzymes.
机译:众所周知,生命是水为基础的。氢氧根和氢氧根离子的暴露是恒定且普遍存在的,对这些离子做出适当反应的进化压力可能很大。真菌通过调整其输出到细胞表面或超出环境pH值的活动的输出来响应其环境。我们开始瞥见它们如何感测环境pH并将这些信息传递给转录因子,转录因子的作用可确保制备适当的基因产物。尽管对pH信号转导本身知之甚少,但其对同源转录因子的影响要清楚得多。有趣的是,在动物界中发现了介导环境pH调节真菌基因表达的该系统各组分的同源物。该调节系统的潜在应用重要性在于其在动植物真菌致病性中的关键作用,以及在控制毒素,抗生素和分泌酶的真菌产生中的关键作用。

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