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促炎 T 细胞中的 DNA 损伤、代谢和衰老:以类风湿关节炎为模型系统。

DNA damage, metabolism and aging in pro-inflammatory T cells: Rheumatoid arthritis as a model system.

机构信息

Department of Medicine, Division of Immunology and Rheumatology, Stanford University, Stanford, CA 94305, USA; Department of Medicine, Veterans Affairs Palo Alto Health Care System, Palo Alto, CA 94306, USA.

Department of Medicine, Division of Immunology and Rheumatology, Stanford University, Stanford, CA 94305, USA; Department of Medicine, Veterans Affairs Palo Alto Health Care System, Palo Alto, CA 94306, USA.

出版信息

Exp Gerontol. 2018 May;105:118-127. doi: 10.1016/j.exger.2017.10.027. Epub 2017 Nov 8.

Abstract

The aging process is the major driver of morbidity and mortality, steeply increasing the risk to succumb to cancer, cardiovascular disease, infection and neurodegeneration. Inflammation is a common denominator in age-related pathologies, identifying the immune system as a gatekeeper in aging overall. Among immune cells, T cells are long-lived and exposed to intense replication pressure, making them sensitive to aging-related abnormalities. In successful T cell aging, numbers of naïve cells, repertoire diversity and activation thresholds are preserved as long as possible; in maladaptive T cell aging, protective T cell functions decline and pro-inflammatory effector cells are enriched. Here, we review in the model system of rheumatoid arthritis (RA) how maladaptive T cell aging renders the host susceptible to chronic, tissue-damaging inflammation. In T cells from RA patients, known to be about 20years pre-aged, three interconnected functional domains are altered: DNA damage repair, metabolic activity generating energy and biosynthetic precursor molecules, and shaping of plasma membranes to promote T cell motility. In each of these domains, key molecules and pathways have now been identified, including the glycolytic enzymes PFKFB3 and G6PD; the DNA repair molecules ATM, DNA-PKcs and MRE11A; and the podosome marker protein TKS5. Some of these molecules may help in defining targetable pathways to slow the T cell aging process.

摘要

衰老过程是发病率和死亡率的主要驱动因素,极大地增加了罹患癌症、心血管疾病、感染和神经退行性疾病的风险。炎症是与年龄相关的病理的共同特征,将免疫系统确定为整体衰老的守门员。在免疫细胞中,T 细胞寿命长且暴露于强烈的复制压力下,使其容易受到与衰老相关的异常影响。在成功的 T 细胞衰老中,只要有可能,幼稚细胞的数量、 repertoire 多样性和激活阈值就会尽可能地得到保留;在适应性 T 细胞衰老中,保护性 T 细胞功能下降,促炎效应细胞富集。在这里,我们在类风湿关节炎 (RA) 的模型系统中回顾了适应性 T 细胞衰老如何使宿主易患慢性、组织损伤性炎症。在 RA 患者的 T 细胞中,已知它们已经提前衰老了大约 20 年,三个相互关联的功能域发生了改变:DNA 损伤修复、产生能量和生物合成前体分子的代谢活性,以及促进 T 细胞运动的质膜成形。在这些域中的每一个中,现在已经确定了关键分子和途径,包括糖酵解酶 PFKFB3 和 G6PD;DNA 修复分子 ATM、DNA-PKcs 和 MRE11A;和 podosome 标记蛋白 TKS5。其中一些分子可能有助于定义可靶向的途径来减缓 T 细胞衰老过程。

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