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首页> 外文期刊>Cell Host & Microbe >Type I Interferon Response Dysregulates Host Iron Homeostasis and Enhances Candida glabrata Infection
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Type I Interferon Response Dysregulates Host Iron Homeostasis and Enhances Candida glabrata Infection

机译:I型干扰素反应厌氧宿主宿主稳态并增强念珠菌感染

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摘要

Type I interferons (IFNs-I) fulfil multiple protective functions during pathogenic infections, but they can also cause detrimental effects and enhance immunopathology. Here, we report that IFNs-I promote the dysregulation of iron homeostasis in macrophages during systemic infections with the intracellular pathogen Candida glabrata, leading to fungal survival and persistence. By engaging JAK1, IFNs-I disturb the balance of the transcriptional activator NRF2 and repressor BACH1 to induce downregulation of the key iron exporter Fpn1 in macrophages. This leads to enhanced iron accumulation in the phagolysosome and failure to restrict fungal access to iron pools. As a result, C. glabrata acquires iron via the Sit1/Ftr1 iron transporter system, facilitating fungal intracellular replication and immune evasion. Thus, IFNs-I are central regulators of iron homeostasis, which can impact infection, and restricting iron bioavailability may offer therapeutic strategies to combat invasive fungal infections.
机译:I型干扰素(IFN-I)在致病性感染期间发挥多种保护功能,但它们也会造成有害影响并增强免疫病理学。在此,我们报告IFNs-I在细胞内病原体光滑念珠菌系统性感染期间促进巨噬细胞铁稳态的失调,从而导致真菌存活和持续存在。IFNs-I通过与JAK1结合,扰乱转录激活子NRF2和阻遏子BACH1的平衡,从而诱导巨噬细胞中关键的铁出口蛋白Fpn1的下调。这导致吞噬小体中的铁积累增强,并未能限制真菌进入铁池。因此,光滑梭菌通过Sit1/Ftr1铁转运系统获取铁,促进真菌细胞内复制和免疫逃避。因此,IFN-I是铁稳态的中央调节器,铁稳态可以影响感染,限制铁的生物利用度可以提供治疗策略来对抗侵袭性真菌感染。

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  • 来源
    《Cell Host & Microbe》 |2020年第3期|共21页
  • 作者单位

    Med Univ Vienna Ctr Med Biochem Max Perutz Labs Vienna Campus Vienna Bioctr A-1030 Vienna Austria;

    Med Univ Vienna Ctr Med Biochem Max Perutz Labs Vienna Campus Vienna Bioctr A-1030 Vienna Austria;

    Med Univ Vienna Ctr Med Biochem Max Perutz Labs Vienna Campus Vienna Bioctr A-1030 Vienna Austria;

    Med Univ Innsbruck Dept Internal Med II Infect Dis Rheumatol &

    Pneum A-6020 Innsbruck Austria;

    Med Univ Vienna Ctr Med Biochem Max Perutz Labs Vienna Campus Vienna Bioctr A-1030 Vienna Austria;

    Med Univ Vienna Ctr Med Biochem Max Perutz Labs Vienna Campus Vienna Bioctr A-1030 Vienna Austria;

    Med Univ Vienna Ctr Med Biochem Max Perutz Labs Vienna Campus Vienna Bioctr A-1030 Vienna Austria;

    Med Univ Vienna Ctr Med Biochem Max Perutz Labs Vienna Campus Vienna Bioctr A-1030 Vienna Austria;

    Med Univ Vienna Ctr Med Biochem Max Perutz Labs Vienna Campus Vienna Bioctr A-1030 Vienna Austria;

    Med Univ Vienna Ctr Med Biochem Max Perutz Labs Vienna Campus Vienna Bioctr A-1030 Vienna Austria;

    Med Univ Vienna Ctr Med Biochem Max Perutz Labs Vienna Campus Vienna Bioctr A-1030 Vienna Austria;

    TU Wien Inst Chem Technol &

    Analyt A-1060 Vienna Austria;

    Univ Vet Med Vienna Inst Anim Breeding &

    Genet Dept Biomed Sci A-1210 Vienna Austria;

    Med Univ Innsbruck Dept Internal Med II Infect Dis Rheumatol &

    Pneum A-6020 Innsbruck Austria;

    Med Univ Vienna Ctr Med Biochem Max Perutz Labs Vienna Campus Vienna Bioctr A-1030 Vienna Austria;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 普通生物学;
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