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胶质细胞成熟因子-γ 通过线粒体 ROS 调节小鼠巨噬细胞铁代谢和 M2 极化。

Glia maturation factor-γ regulates murine macrophage iron metabolism and M2 polarization through mitochondrial ROS.

机构信息

Molecular and Clinical Hematology Branch, National Heart, Lung, and Blood Institute.

Metals Biology and Molecular Medicine Group, Eunice Kennedy Shriver National Institute of Child Health and Human Development, and.

出版信息

Blood Adv. 2019 Apr 23;3(8):1211-1225. doi: 10.1182/bloodadvances.2018026070.

Abstract

In macrophages, cellular iron metabolism status is tightly integrated with macrophage phenotype and associated with mitochondrial function. However, how molecular events regulate mitochondrial activity to integrate regulation of iron metabolism and macrophage phenotype remains unclear. Here, we explored the important role of the actin-regulatory protein glia maturation factor-γ (GMFG) in the regulation of cellular iron metabolism and macrophage phenotype. We found that GMFG was downregulated in murine macrophages by exposure to iron and hydrogen peroxide. GMFG knockdown altered the expression of iron metabolism proteins and increased iron levels in murine macrophages and concomitantly promoted their polarization toward an anti-inflammatory M2 phenotype. GMFG-knockdown macrophages exhibited moderately increased levels of mitochondrial reactive oxygen species (mtROS), which were accompanied by decreased expression of some mitochondrial respiration chain components, including the iron-sulfur cluster assembly scaffold protein ISCU as well as the antioxidant enzymes SOD1 and SOD2. Importantly, treatment of GMFG-knockdown macrophages with the antioxidant N-acetylcysteine reversed the altered expression of iron metabolism proteins and significantly inhibited the enhanced gene expression of M2 macrophage markers, suggesting that mtROS is mechanistically linked to cellular iron metabolism and macrophage phenotype. Finally, GMFG interacted with the mitochondrial membrane ATPase ATAD3A, suggesting that GMFG knockdown-induced mtROS production might be attributed to alteration of mitochondrial function in macrophages. Our findings suggest that GMFG is an important regulator in cellular iron metabolism and macrophage phenotype and could be a novel therapeutic target for modulating macrophage function in immune and metabolic disorders.

摘要

在巨噬细胞中,细胞内铁代谢状态与巨噬细胞表型紧密结合,并与线粒体功能相关。然而,分子事件如何调节线粒体活性,整合铁代谢和巨噬细胞表型的调节仍然不清楚。在这里,我们探索了肌动蛋白调节蛋白神经胶质细胞成熟因子-γ(GMFG)在调节细胞内铁代谢和巨噬细胞表型中的重要作用。我们发现,暴露于铁和过氧化氢会使小鼠巨噬细胞中的 GMFG 下调。GMFG 敲低改变了铁代谢蛋白的表达,增加了小鼠巨噬细胞中的铁含量,并同时促进其向抗炎 M2 表型极化。GMFG 敲低的巨噬细胞表现出中等水平的线粒体活性氧(mtROS)增加,这伴随着一些线粒体呼吸链成分的表达减少,包括铁硫簇组装支架蛋白 ISCU 以及抗氧化酶 SOD1 和 SOD2。重要的是,用抗氧化剂 N-乙酰半胱氨酸处理 GMFG 敲低的巨噬细胞可逆转铁代谢蛋白表达的改变,并显著抑制 M2 巨噬细胞标志物基因表达的增强,表明 mtROS 与细胞内铁代谢和巨噬细胞表型在机制上相关。最后,GMFG 与线粒体膜 ATP 酶 ATAD3A 相互作用,表明 GMFG 敲低诱导的 mtROS 产生可能归因于巨噬细胞中线粒体功能的改变。我们的研究结果表明,GMFG 是细胞内铁代谢和巨噬细胞表型的重要调节剂,可能是调节免疫和代谢紊乱中巨噬细胞功能的新的治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/890a/6482362/d6cfcdbc5149/advances026070absf1.jpg

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