NAD+激酶
生物
细胞代谢
免疫
新陈代谢
自然杀伤细胞
线粒体
化学
生物化学
免疫系统
免疫学
酶
细胞毒性
体外
作者
Xiaowei Guo,Siyu Tan,Tixiao Wang,Renhui Sun,Shuangjie Li,Panpan Tian,Mengzhen Li,Yuzhen Wang,Yankun Zhang,Yu‐Chuan Yan,Zhao‐Ru Dong,Lun‐Jie Yan,Xuetian Yue,Zhuanchang Wu,Chunyang Li,Kazuya Yamagata,Lifen Gao,Chunhong Ma,Tao Li,Xiaohong Liang
出处
期刊:Hepatology
[Lippincott Williams & Wilkins]
日期:2022-07-11
卷期号:78 (2): 468-485
被引量:37
摘要
Natural killer (NK) cells are key players in tumor immunosurveillance, and metabolic adaptation manipulates their fate and functional state. The nicotinamide adenine dinucleotide (NAD + ) has emerged as a vital factor to link cellular metabolism and signaling transduction. Here, we identified NAD + metabolism as a central hub to determine the homeostasis and function of NK cells.NAD + level was elevated in activated NK cells. NAD + supplementation not only enhanced cytokine production and cytotoxicity but also improved the proliferation and viability of NK cells. Intriguingly, the salvage pathway was involved in maintaining NAD + homeostasis in activated NK cells. Genetic ablation or pharmacological blockade of nicotinamide phosphoribosyltransferase (NAMPT), the rate-limiting enzyme in the NAD + salvage pathway, markedly destroyed the viability and function of NK cells. Mechanistically, NAD + salvage dictated the mitochondrial homeostasis and oxidative phosphorylation activity to support the optimal function of NK cells. However, in human HCC tissues, NAMPT expression and NAD + level were significantly down-regulated in tumor-infiltrating NK cells, which negatively correlated with patient survival. And lactate accumulation in the tumor microenvironment was at least partially responsible for the transcriptional repression of NAMPT in NK cells. Further, deficiency of Nampt in NK cells accelerated the growth of HCC and melanoma. Supplementation of the NAD + precursor nicotinamide mononucleotide (NMN) significantly improved NK antitumor response in both mouse and human cell-derived xenografts.These findings reveal NAD + salvage as an essential factor for NK-cell homeostasis and function, suggesting a potential strategy for invigorating NK cell-based immunotherapy.
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