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SREBP Coordinates Iron and Ergosterol Homeostasis to Mediate Triazole Drug and Hypoxia Responses in the Human Fungal Pathogen Aspergillus fumigatus

机译:SREBP协调铁和麦角固醇体内稳态以介导人类真菌病原体烟曲霉中的三唑类药物和缺氧反应

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摘要

Sterol regulatory element binding proteins (SREBPs) are a class of basic helix-loop-helix transcription factors that regulate diverse cellular responses in eukaryotes. Adding to the recognized importance of SREBPs in human health, SREBPs in the human fungal pathogens Cryptococcus neoformans and Aspergillus fumigatus are required for fungal virulence and susceptibility to triazole antifungal drugs. To date, the exact mechanism(s) behind the role of SREBP in these observed phenotypes is not clear. Here, we report that A. fumigatus SREBP, SrbA, mediates regulation of iron acquisition in response to hypoxia and low iron conditions. To further define SrbA's role in iron acquisition in relation to previously studied fungal regulators of iron metabolism, SreA and HapX, a series of mutants were generated in the ΔsrbA background. These data suggest that SrbA is activated independently of SreA and HapX in response to iron limitation, but that HapX mRNA induction is partially dependent on SrbA. Intriguingly, exogenous addition of high iron or genetic deletion of sreA in the ΔsrbA background was able to partially rescue the hypoxia growth, triazole drug susceptibility, and decrease in ergosterol content phenotypes of ΔsrbA. Thus, we conclude that the fungal SREBP, SrbA, is critical for coordinating genes involved in iron acquisition and ergosterol biosynthesis under hypoxia and low iron conditions found at sites of human fungal infections. These results support a role for SREBP–mediated iron regulation in fungal virulence, and they lay a foundation for further exploration of SREBP's role in iron homeostasis in other eukaryotes.
机译:甾醇调节元件结合蛋白(SREBPs)是一类基本的螺旋-环-螺旋转录因子,可调节真核生物中的多种细胞应答。除SREBPs在人类健康中的重要性外,人类真菌病原体中的SREBPs对于真菌的毒性和对三唑类抗真菌药的敏感性也需要新隐球菌和烟曲霉。迄今为止,尚不清楚在这些观察到的表型中SREBP的作用背后的确切机制。在这里,我们报告说,烟曲霉SREBP,SrbA介导了对缺氧和低铁条件下铁的获取的调节。为了进一步定义SrbA与先前研究的铁代谢的真菌调节剂SreA和HapX有关的铁吸收中的作用,在ΔsrbA背景中生成了一系列突变体。这些数据表明响应铁限制,SrbA的激活独立于SreA和HapX,但HapX mRNA的诱导部分依赖于SrbA。有趣的是,在ΔsrbA背景中外源添加高铁或sreA的基因缺失能够部分挽救缺氧的生长,三唑药物敏感性以及ΔsrbA的麦角固醇含量表型的降低。因此,我们得出结论,真菌SREBP,SrbA对于协调在人类真菌感染部位发现的低氧和低铁条件下参与铁的获取和麦角固醇生物合成的基因至关重要。这些结果支持SREBP介导的铁调节在真菌毒力中的作用,并为进一步探索SREBP在其他真核生物中的铁稳态中的作用奠定了基础。

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