The metabolic cofactor Coenzyme A enhances alternative macrophage activation via MyD88-linked signaling.

Anthony E Jones, Amy Rios, Neira Ibrahimovic, Carolina Chavez, Nicholas A Bayley, Andréa B Ball, Wei Yuan Hsieh, Alessandro Sammarco, Amber R Bianchi, Angel A Cortez, Thomas G Graeber, Alexander Hoffmann, Steven J Bensinger, Ajit S Divakaruni
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Abstract

Metabolites and metabolic co-factors can shape the innate immune response, though the pathways by which these molecules adjust inflammation remain incompletely understood. Here we show that the metabolic cofactor Coenzyme A (CoA) enhances IL-4 driven alternative macrophage activation [m(IL-4)] in vitro and in vivo. Unexpectedly, we found that perturbations in intracellular CoA metabolism did not influence m(IL-4) differentiation. Rather, we discovered that exogenous CoA provides a weak TLR4 signal which primes macrophages for increased receptivity to IL-4 signals and resolution of inflammation via MyD88. Mechanistic studies revealed MyD88-linked signals prime for IL-4 responsiveness, in part, by reshaping chromatin accessibility to enhance transcription of IL-4-linked genes. The results identify CoA as a host metabolic co-factor that influences macrophage function through an extrinsic TLR4-dependent mechanism, and suggests that damage-associated molecular patterns (DAMPs) can prime macrophages for alternative activation and resolution of inflammation.

代谢辅因子辅酶 A 可通过与 MyD88 相关的信号传导增强巨噬细胞的替代性活化。
代谢物和代谢辅助因子可影响先天性免疫反应,但这些分子调节炎症的途径仍不完全清楚。在这里,我们发现代谢辅因子辅酶 A(CoA)能在体外和体内增强 IL-4 驱动的巨噬细胞替代活化[m(IL-4)]。意想不到的是,我们发现细胞内 CoA 代谢的紊乱并不影响 m(IL-4)的分化。相反,我们发现外源 CoA 提供了一个微弱的 TLR4 信号,它能使巨噬细胞对 IL-4 信号的接受能力增强,并通过 MyD88 解决炎症问题。机理研究显示,与 MyD88 相关的信号部分是通过重塑染色质的可及性,增强与 IL-4 相关基因的转录,从而激发 IL-4 的反应能力。研究结果表明,CoA是一种宿主代谢辅助因子,它通过一种依赖于TLR4的外在机制影响巨噬细胞的功能,并表明损伤相关分子模式(DAMPs)可为巨噬细胞的替代性激活和炎症的解决提供条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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