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丝状真菌烟曲霉中环境pH对锌稳态基因的调控

Regulation of zinc homeostatic genes by environmental pH in the filamentous fungus Aspergillus fumigatus.

作者信息

Toledo Héctor, Sánchez Clara Inés, Marín Laura, Amich Jorge, Calera José Antonio

机构信息

Instituto de Biología Funcional y Genómica (IBFG-CSIC), Universidad de Salamanca, Salamanca, Spain.

Departamento de Microbiología y Genética, Universidad de Salamanca, Salamanca, Spain.

出版信息

Environ Microbiol. 2022 Feb;24(2):643-666. doi: 10.1111/1462-2920.15452. Epub 2021 Jun 24.

Abstract

Aspergillus fumigatus can grow over a broad range of pH values even though zinc availability is greatly conditioned by ambient pH. It has been previously shown that regulation of zinc homeostatic genes in this fungus relies on the transcription factor ZafA. In addition, their expression is further modulated by the transcription factor PacC depending on ambient pH, which allows this fungus to grow in diverse types of niches, including soils and the lungs of immunosuppressed hosts. In this work the regulation by PacC of genes zrfB and zrfC that are expressed, respectively, under acidic and alkaline zinc-limiting conditions have been analysed in detail. Thus, data that extend the current model for PacC function, including the role of the full-length PacC protein and the PacC processed forms (PacC and PacC ) on gene expression has been provided, and a new mechanism for the repression of acid-expressed genes in alkaline media based on interference with the start of transcription has been described. Moreover, it was proposed that the transcription of both acid-expressed and alkaline-expressed genes under zinc-limiting conditions might also rely on a third factor (putatively Pontin/Reptin), which may be required to integrate the action of PacC and ZafA into gene specific transcriptional responses.

摘要

烟曲霉能够在很宽的pH值范围内生长,尽管锌的可利用性受环境pH值的极大影响。先前已经表明,该真菌中锌稳态基因的调控依赖于转录因子ZafA。此外,它们的表达还会根据环境pH值由转录因子PacC进一步调节,这使得这种真菌能够在多种类型的生态位中生长,包括土壤和免疫抑制宿主的肺部。在这项工作中,详细分析了PacC对分别在酸性和碱性锌限制条件下表达的zrfB和zrfC基因的调控。因此,提供了扩展当前PacC功能模型的数据,包括全长PacC蛋白和PacC加工形式(PacC和PacC )在基因表达上的作用,并描述了一种基于干扰转录起始来抑制碱性培养基中酸表达基因的新机制。此外,有人提出,在锌限制条件下酸表达基因和碱表达基因的转录可能还依赖于第三个因子(推测为Pontin/Reptin),它可能是将PacC和ZafA的作用整合到基因特异性转录反应中所必需的。

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