Laboratoire Maladies Rares, Génétique et Métabolisme, INSERM U1211, Université de Bordeaux, CHU Pellegrin, École de Sages-Femmes, 33000 Bordeaux, France.
Laboratoire Maladies Rares, Génétique et Métabolisme, INSERM U1211, Université de Bordeaux, CHU Pellegrin, École de Sages-Femmes, 33000 Bordeaux, France.
J Mol Biol. 2018 Oct 19;430(21):3906-3921. doi: 10.1016/j.jmb.2018.07.003. Epub 2018 Jul 10.
Metabolic reprogramming of cells from the innate immune system is one of the most noteworthy topics in immunological research nowadays. Upon infection or tissue damage, innate immune cells, such as macrophages, mobilize various immune and metabolic signals to mount a response best suited to eradicate the threat. Current data indicate that both the immune and metabolic responses are closely interconnected. On account of its peculiar position in regulating both of these processes, the mitochondrion has emerged as a critical organelle that orchestrates the coordinated metabolic and immune adaptations in macrophages. Significant effort is now underway to understand how metabolic features of differentiated macrophages regulate their immune specificities with the eventual goal to manipulate cellular metabolism to control immunity. In this review, we highlight some of the recent work that place cellular and mitochondrial metabolism in a central position in the macrophage differentiation program.
细胞代谢重编程是当今免疫学研究中最值得关注的课题之一。在受到感染或组织损伤时,先天免疫细胞(如巨噬细胞)会调动各种免疫和代谢信号,以做出最适合消除威胁的反应。目前的数据表明,免疫和代谢反应密切相关。由于线粒体在调节这两个过程方面的特殊地位,它已成为一个关键的细胞器,协调巨噬细胞中的代谢和免疫适应性。目前正在进行大量工作,以了解分化的巨噬细胞的代谢特征如何调节其免疫特异性,最终目标是操纵细胞代谢来控制免疫。在这篇综述中,我们强调了一些最近的工作,这些工作将细胞和线粒体代谢置于巨噬细胞分化程序的中心位置。