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小鼠体内的L-瓜氨酸代谢增强CD4 T细胞增殖和细胞因子产生,并在感染分枝杆菌的肺部蓄积。

l-Citrulline Metabolism in Mice Augments CD4 T Cell Proliferation and Cytokine Production , and Accumulation in the Mycobacteria-Infected Lung.

作者信息

Lange Shannon M, McKell Melanie C, Schmidt Stephanie M, Hossfeld Austin P, Chaturvedi Vandana, Kinder Jeremy M, McAlees Jaclyn W, Lewkowich Ian P, Way Sing Sing, Turner Joanne, Qualls Joseph E

机构信息

Laboratory of Dr. Joseph E. Qualls, Division of Infectious Diseases, Department of Pediatrics, Cincinnati Children's Hospital Medical Center, Cincinnati, OH, United States.

Immunology Graduate Program, University of Cincinnati/Cincinnati Children's Hospital Medical Center, Cincinnati, OH, United States.

出版信息

Front Immunol. 2017 Nov 16;8:1561. doi: 10.3389/fimmu.2017.01561. eCollection 2017.

Abstract

Activation, recruitment, and effector function of T lymphocytes are essential for control of mycobacterial infection. These processes are tightly regulated in T cells by the availability of l-arginine within the microenvironment. In turn, mycobacterial infection dampens T cell responsiveness through arginase induction in myeloid cells, promoting sequestration of l-arginine within the local milieu. Here, we show T cells can replenish intracellular l-arginine through metabolism of l-citrulline to mediate inflammatory function, allowing anti-mycobacterial T cells to overcome arginase-mediated suppression. Furthermore, T cell l-citrulline metabolism is necessary for accumulation of CD4 T cells at the site of infection, suggesting this metabolic pathway is involved during anti-mycobacterial T cell immunity . Together, these findings establish a contribution for l-arginine synthesis by T cells during mycobacterial infection, and implicate l-citrulline as a potential immuno-nutrient to modulate host immunity.

摘要

T淋巴细胞的激活、募集和效应器功能对于控制分枝杆菌感染至关重要。这些过程在T细胞中通过微环境中L-精氨酸的可用性受到严格调控。反过来,分枝杆菌感染通过诱导髓样细胞中的精氨酸酶来抑制T细胞反应性,促进L-精氨酸在局部环境中的隔离。在这里,我们表明T细胞可以通过L-瓜氨酸的代谢来补充细胞内L-精氨酸,以介导炎症功能,使抗分枝杆菌T细胞能够克服精氨酸酶介导的抑制作用。此外,T细胞L-瓜氨酸代谢对于CD4 T细胞在感染部位的积累是必要的,这表明该代谢途径参与了抗分枝杆菌T细胞免疫过程。总之,这些发现确立了T细胞在分枝杆菌感染期间对L-精氨酸合成的贡献,并暗示L-瓜氨酸作为一种潜在的免疫营养素来调节宿主免疫力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/56fc/5696333/fe3fa2f6898b/fimmu-08-01561-g001.jpg

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