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烟曲霉 AcuM 调节铁的摄取和糖异生。

Aspergillus fumigatus AcuM regulates both iron acquisition and gluconeogenesis.

机构信息

Los Angeles Biomedical Research Institute at Harbor-UCLA Medical Center, Torrance, CA 90502, USA.

出版信息

Mol Microbiol. 2010 Nov;78(4):1038-54. doi: 10.1111/j.1365-2958.2010.07389.x. Epub 2010 Sep 27.

Abstract

Relatively few transcription factors that govern the virulence of Aspergillus fumigatus are known. We constructed 11 A. fumigatus transcription factor mutants and screened them for altered virulence in Galleria mellonella larvae. We discovered that the zinc cluster transcription factor, AcuM, is essential for maximal virulence in this model, as well as in murine models of haematogenously disseminated and invasive pulmonary aspergillosis. Transcriptional profiling experiments suggested that AcuM suppresses sreA and induces hapX to stimulate expression of genes involved in both reductive iron assimilation and siderophore-mediated iron uptake. Consistent with these results, a ΔacuM mutant had reduced iron incorporation, decreased extracellular siderophore production and impaired capacity to grow under iron-limited conditions. Interestingly, an Aspergillus nidulansΔacuM mutant had normal extracellular siderophore production and growth under iron-limited conditions, indicating that AcuM does not govern iron acquisition in this organism. A. fumigatus AcuM also regulated genes involved in gluconeogenesis, and the ΔacuM mutant had impaired growth on gluconeogenic carbon sources. Deletion of sreA in the ΔacuM mutant restored iron uptake, extracellular siderophore production and virulence, but not the defect in gluconeogenesis. Thus, AcuM represses SreA and thereby induces iron acquisition, a process that is essential for the maximal virulence of A. fumigatus.

摘要

目前已知的调控烟曲霉毒力的转录因子相对较少。我们构建了 11 种烟曲霉转录因子突变体,并在大蜡螟幼虫中筛选它们的毒力变化。我们发现锌簇转录因子 AcuM 是该模型以及血液传播和侵袭性肺曲霉病的鼠模型中最大毒力所必需的。转录谱分析实验表明,AcuM 抑制 sreA 并诱导 hapX 以刺激参与还原铁吸收和铁载体介导铁摄取的基因表达。与这些结果一致,ΔacuM 突变体的铁掺入减少,细胞外铁载体产生减少,在缺铁条件下的生长能力受损。有趣的是,棘孢曲霉ΔacuM 突变体在缺铁条件下具有正常的细胞外铁载体产生和生长,表明 AcuM 并不控制该生物体中的铁获取。烟曲霉 AcuM 还调节参与糖异生的基因,ΔacuM 突变体在糖异生碳源上的生长受到损害。在 ΔacuM 突变体中缺失 sreA 恢复了铁摄取、细胞外铁载体产生和毒力,但不能恢复糖异生缺陷。因此,AcuM 抑制 SreA,从而诱导铁摄取,这是烟曲霉最大毒力所必需的过程。

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