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线粒体融合蛋白 2 通过维持有氧糖酵解和激活异噬作用来增强小鼠的先天免疫。

Mitofusin-2 boosts innate immunity through the maintenance of aerobic glycolysis and activation of xenophagy in mice.

机构信息

Department of Microbiology, Chungnam National University School of Medicine, Daejeon, Korea.

Infection Control Convergence Research Center, Chungnam National University School of Medicine, Daejeon, Korea.

出版信息

Commun Biol. 2021 May 10;4(1):548. doi: 10.1038/s42003-021-02073-6.

Abstract

Mitochondrial function and innate immunity are intimately linked; however, the mechanisms how mitochondrion-shaping proteins regulate innate host defense remains largely unknown. Herein we show that mitofusin-2 (MFN2), a mitochondrial fusion protein, promotes innate host defense through the maintenance of aerobic glycolysis and xenophagy via hypoxia-inducible factor (HIF)-1α during intracellular bacterial infection. Myeloid-specific MFN2 deficiency in mice impaired the antimicrobial and inflammatory responses against mycobacterial and listerial infection. Mechanistically, MFN2 was required for the enhancement of inflammatory signaling through optimal induction of aerobic glycolysis via HIF-1α, which is activated by mitochondrial respiratory chain complex I and reactive oxygen species, in macrophages. MFN2 did not impact mitophagy during infection; however, it promoted xenophagy activation through HIF-1α. In addition, MFN2 interacted with the late endosomal protein Rab7, to facilitate xenophagy during mycobacterial infection. Our findings reveal the mechanistic regulations by which MFN2 tailors the innate host defense through coordinated control of immunometabolism and xenophagy via HIF-1α during bacterial infection.

摘要

线粒体功能和先天免疫密切相关;然而,线粒体塑形蛋白调节先天宿主防御的机制在很大程度上仍然未知。本文中,我们发现线粒体融合蛋白 2(MFN2)通过在细胞内细菌感染期间通过缺氧诱导因子 1α(HIF-1α)维持有氧糖酵解和异噬作用,促进先天宿主防御。在小鼠中,髓样细胞特异性 MFN2 缺乏会损害对抗分枝杆菌和李斯特菌感染的抗菌和炎症反应。从机制上讲,MFN2 通过 HIF-1α 最佳诱导有氧糖酵解增强炎症信号,这是由线粒体呼吸链复合物 I 和活性氧激活的,在巨噬细胞中。MFN2 在感染过程中不影响自噬;然而,它通过 HIF-1α 促进异噬作用的激活。此外,MFN2 与晚期内体蛋白 Rab7 相互作用,在分枝杆菌感染期间促进异噬作用。我们的研究结果揭示了 MFN2 通过协调控制免疫代谢和通过 HIF-1α 进行异噬作用,在细菌感染期间定制先天宿主防御的机制调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/22c3/8110749/962956a28764/42003_2021_2073_Fig1_HTML.jpg

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