首页> 美国卫生研究院文献>Eukaryotic Cell >Aspergillus fumigatus Survival in Alkaline and Extreme Zinc-Limiting Environments Relies on the Induction of a Zinc Homeostasis System Encoded by the zrfC and aspf2 Genes
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Aspergillus fumigatus Survival in Alkaline and Extreme Zinc-Limiting Environments Relies on the Induction of a Zinc Homeostasis System Encoded by the zrfC and aspf2 Genes

机译:烟曲霉在碱性和极端限锌环境中的生存依赖于由zrfC和aspf2基因编码的锌稳态系统的诱导

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摘要

Aspergillus fumigatus has three zinc transporter-encoding genes whose expression is regulated by both pH and the environmental concentration of zinc. We have previously reported that the zrfA and zrfB genes of A. fumigatus are transcribed at higher levels and are required for fungal growth under acidic zinc-limiting conditions whereas they are dispensable for growth in neutral or alkaline zinc-limiting media. Here we report that the transporter of the zinc uptake system that functions in A. fumigatus growing in neutral or alkaline environments is encoded by zrfC. The transcription of zrfC occurs divergently with respect to the adjacent aspf2 gene, which encodes an immunodominant antigen secreted by A. fumigatus. The two genes—zrfC and aspf2—are required to different extents for fungal growth in alkaline and extreme zinc-limiting media. Indeed, these environmental conditions induce the simultaneous transcription of both genes mediated by the transcriptional regulators ZafA and PacC. ZafA upregulates the expression of zrfC and aspf2 under zinc-limiting conditions regardless of the ambient pH, whereas PacC represses the expression of these genes under acidic growth conditions. Interestingly, the mode of action of PacC for zrfC-aspf2 transcription contrasts with the more widely accepted model for PacC function, according to which under alkaline growth conditions PacC would activate the transcription of alkaline-expressed genes but would repress the transcription of acid-expressed genes. In sum, this report provides a good framework for investigating several important aspects of the biology of species of Aspergillus, including the repression of alkaline genes by PacC at acidic pH and the interrelationship that must exist between tissue pH, metal availability in the host tissue, and fungal virulence.
机译:烟曲霉具有三个锌转运蛋白编码基因,其表达受pH和锌的环境浓度调节。我们以前曾报道过,烟曲霉的zrfA和zrfB基因以较高的水平转录,是在酸性锌限制条件下真菌生长所必需的,而它们对于在中性或碱性锌限制培养基中的生长是必不可少的。在这里我们报告锌吸收系统的转运蛋白在zrfC编码,该转运蛋白在中性或碱性环境中生长的烟曲霉中起作用。 zrfC的转录相对于相邻的aspf2基因发生分歧,该基因编码烟曲霉分泌的免疫优势抗原。在碱性和极端锌限制培养基中,真菌生长需要不同程度的zrfC和aspf2这两个基因。实际上,这些环境条件诱导了转录调节因子ZafA和PacC介导的两个基因同时转录。 ZafA会在锌限制条件下上调zrfC和aspf2的表达,而与环境pH无关,而PacC在酸性生长条件下会抑制这些基因的表达。有趣的是,PacC对zrfC-aspf2转录的作用方式与更广为接受的PacC功能模型相反,根据该模型,在碱性生长条件下,PacC会激活碱性表达基因的转录,但会抑制酸性表达的转录。基因。总而言之,该报告为研究曲霉属物种生物学的几个重要方面提供了一个良好的框架,包括在酸性pH下PacC对碱性基因的抑制以及组织pH,宿主组织中金属的可利用性,和真菌毒力。

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