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CD8 记忆 T 细胞具有生物能量优势,这是它们快速回忆能力的基础。

CD8 memory T cells have a bioenergetic advantage that underlies their rapid recall ability.

机构信息

Department of Pathology and Immunology, Washington University School of Medicine in St. Louis, St. Louis, MO 63110, USA.

出版信息

Proc Natl Acad Sci U S A. 2013 Aug 27;110(35):14336-41. doi: 10.1073/pnas.1221740110. Epub 2013 Aug 12.

Abstract

A characteristic of memory T (TM) cells is their ability to mount faster and stronger responses to reinfection than naïve T (TN) cells do in response to an initial infection. However, the mechanisms that allow this rapid recall are not completely understood. We found that CD8 TM cells have more mitochondrial mass than CD8 TN cells and, that upon activation, the resulting secondary effector T (TE) cells proliferate more quickly, produce more cytokines, and maintain greater ATP levels than primary effector T cells. We also found that after activation, TM cells increase oxidative phosphorylation and aerobic glycolysis and sustain this increase to a greater extent than TN cells, suggesting that greater mitochondrial mass in TM cells not only promotes oxidative capacity, but also glycolytic capacity. We show that mitochondrial ATP is essential for the rapid induction of glycolysis in response to activation and the initiation of proliferation of both TN and TM cells. We also found that fatty acid oxidation is needed for TM cells to rapidly respond upon restimulation. Finally, we show that dissociation of the glycolysis enzyme hexokinase from mitochondria impairs proliferation and blocks the rapid induction of glycolysis upon T-cell receptor stimulation in TM cells. Our results demonstrate that greater mitochondrial mass endows TM cells with a bioenergetic advantage that underlies their ability to rapidly recall in response to reinfection.

摘要

记忆 T(TM)细胞的一个特征是,它们能够比初始感染时的幼稚 T(TN)细胞更快、更强地对再感染作出反应。然而,允许这种快速回忆的机制尚不完全清楚。我们发现,CD8TM 细胞比 CD8TN 细胞具有更多的线粒体质量,并且在激活后,由此产生的次级效应 T(TE)细胞比初级效应 T 细胞增殖更快,产生更多的细胞因子,并维持更高的 ATP 水平。我们还发现,在激活后,TM 细胞增加氧化磷酸化和有氧糖酵解,并在更大程度上维持这种增加,这表明 TM 细胞中更大的线粒体质量不仅促进氧化能力,也促进糖酵解能力。我们表明,线粒体 ATP 对于快速诱导激活后糖酵解以及 TN 和 TM 细胞增殖的启动是必需的。我们还发现,脂肪酸氧化对于 TM 细胞在再刺激时的快速反应是必需的。最后,我们表明,将糖酵解酶己糖激酶从线粒体中分离出来会损害增殖,并阻止 TM 细胞中 T 细胞受体刺激后糖酵解的快速诱导。我们的结果表明,更大的线粒体质量赋予 TM 细胞一种生物能量优势,这是它们能够快速响应再感染的基础。

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