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p47(phox)决定小鼠巨噬细胞的命运。

p47(phox) directs murine macrophage cell fate decisions.

机构信息

Molecular Trafficking Unit, Laboratory of Host Defenses, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, Maryland.

Infectious Disease Pathogenesis Section, Comparative Medicine Branch, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, Maryland.

出版信息

Am J Pathol. 2012 Mar;180(3):1049-1058. doi: 10.1016/j.ajpath.2011.11.019. Epub 2012 Jan 2.

Abstract

Macrophage differentiation and function are pivotal for cell survival from infection and involve the processing of microenvironmental signals that determine macrophage cell fate decisions to establish appropriate inflammatory balance. NADPH oxidase 2 (Nox2)-deficient chronic granulomatous disease (CGD) mice that lack the gp91(phox) (gp91(phox-/-)) catalytic subunit show high mortality rates compared with wild-type mice when challenged by infection with Listeria monocytogenes (Lm), whereas p47(phox)-deficient (p47(phox-/-)) CGD mice show survival rates that are similar to those of wild-type mice. We demonstrate that such survival results from a skewed macrophage differentiation program in p47(phox-/-) mice that favors the production of higher levels of alternatively activated macrophages (AAMacs) compared with levels of either wild-type or gp91(phox-/-) mice. Furthermore, the adoptive transfer of AAMacs from p47(phox-/-) mice can rescue gp91(phox-/-) mice during primary Lm infection. Key features of the protective function provided by p47(phox-/-) AAMacs against Lm infection are enhanced production of IL-1α and killing of Lm. Molecular analysis of this process indicates that p47(phox-/-) macrophages are hyperresponsive to IL-4 and show higher Stat6 phosphorylation levels and signaling coupled to downstream activation of AAMac transcripts in response to IL-4 stimulation. Notably, restoring p47(phox) protein expression levels reverts the p47(phox)-dependent AAMac phenotype. Our results indicate that p47(phox) is a previously unrecognized regulator for IL-4 signaling pathways that are important for macrophage cell fate choice.

摘要

巨噬细胞分化和功能对于细胞从感染中存活至关重要,涉及到处理微环境信号的过程,这些信号决定了巨噬细胞细胞命运决定,以建立适当的炎症平衡。缺乏 NADPH 氧化酶 2 (Nox2) 的慢性肉芽肿病 (CGD) 小鼠缺乏 gp91(phox) (gp91(phox-/-)) 催化亚基,当受到李斯特菌 (Lm) 感染时,与野生型小鼠相比,死亡率很高,而 p47(phox)-缺乏 (p47(phox-/-)) CGD 小鼠的存活率与野生型小鼠相似。我们证明,这种存活是由于 p47(phox-/-) 小鼠中巨噬细胞分化程序的倾斜,与野生型或 gp91(phox-/-) 小鼠相比,p47(phox-/-) 小鼠中产生更高水平的替代性激活巨噬细胞 (AAMacs)。此外,从 p47(phox-/-) 小鼠中过继转移 AAMacs 可以在原发性 Lm 感染期间拯救 gp91(phox-/-) 小鼠。p47(phox-/-) AAMacs 提供的针对 Lm 感染的保护功能的关键特征是增强了 IL-1α 的产生和 Lm 的杀伤。对该过程的分子分析表明,p47(phox-/-) 巨噬细胞对 IL-4 反应过度,并且在 IL-4 刺激下,p47(phox-/-) 巨噬细胞显示更高的 Stat6 磷酸化水平和与下游 AAMac 转录物激活偶联的信号。值得注意的是,恢复 p47(phox) 蛋白表达水平会使 p47(phox) 依赖的 AAMac 表型逆转。我们的研究结果表明,p47(phox) 是一个以前未被识别的 IL-4 信号通路调节剂,对于巨噬细胞细胞命运选择很重要。

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p47(phox) directs murine macrophage cell fate decisions.p47(phox)决定小鼠巨噬细胞的命运。
Am J Pathol. 2012 Mar;180(3):1049-1058. doi: 10.1016/j.ajpath.2011.11.019. Epub 2012 Jan 2.

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