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CD38: T Cell Immuno-Metabolic Modulator

机译:CD38:T细胞免疫代谢调制器

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摘要

Activation and subsequent differentiation of T cells following antigenic stimulation are triggered by highly coordinated signaling events that lead to instilling cells with a discrete metabolic and transcriptional feature. Compelling studies indicate that intracellular nicotinamide adenine dinucleotide (NAD ) levels have profound influence on diverse signaling and metabolic pathways of T cells, and hence dictate their functional fate. CD38, a major mammalian NAD glycohydrolase (NADase), expresses on T cells following activation and appears to be an essential modulator of intracellular NAD levels. The enzymatic activity of CD38 in the process of generating the second messenger cADPR utilizes intracellular NAD and thus limits its availability to different NAD consuming enzymes (PARP, ART, and sirtuins) inside the cells. The present review discusses how the CD38-NAD axis affects T cell activation and differentiation through interfering with their signaling and metabolic processes. We also describe the pivotal role of the CD38-NAD axis in influencing the chromatin remodeling and rewiring T cell response. Overall, this review emphasizes the crucial contribution of the CD38 NAD axis in altering T cell response in various pathophysiological conditions.
机译:通过高度协调的信号事件触发抗原刺激后的T细胞的激活和随后分化,其导致具有离散代谢和转录特征的细胞。令人信服的研究表明,细胞内烟酰胺腺嘌呤二核苷酸(NAD)水平对T细胞的不同信号传导和代谢途径产生了深刻的影响,因此决定了它们的功能命运。 CD38是主要哺乳动物NAD甘油糖酶(NADASE),在激活后表达T细胞,似乎是细胞内NAD水平的必要调节剂。 CD38在产生第二信使CADPR的过程中的酶活性利用细胞内NAD,从而限制其在细胞内部的不同NAD消耗酶(PARP,ART和SIRTUIN)。本综述讨论了CD38-NAD轴如何影响T细胞激活和差异通过干扰其信令和代谢过程。我们还描述了CD38-NAD轴在影响染色质重塑和重新加热T细胞反应中的枢转作用。总体而言,本综述强调CD38 NAD轴在各种病理生理病症中改变T细胞响应的关键贡献。

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