LMP1 enhances aerobic glycolysis in natural killer/T cell lymphoma.

IF 8.1 1区 生物学 Q1 CELL BIOLOGY Cell Death & Disease Pub Date : 2024-08-20 DOI:10.1038/s41419-024-06999-7
Wenting Song, Yuyang Gao, Jiazhuo Wu, Hongwen Li, Zhuangzhuang Shi, Chen Gong, Zihe Zhang, Zhaoming Li, Mingzhi Zhang
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Abstract

Natural killer/T cell lymphoma (NKTCL) exhibits highly aggressive clinical behavior, and the outcomes for relapsed/refractory patients are still poor. Recently, the mechanism underlying the effect of Epstein-Barr virus (EBV) infection, which has not been fully defined in NKTCL, has attracted great attention. We explored how LMP1 promoted aerobic glycolysis via metabolic sequencing combined with mRNA sequencing and immunoprecipitation coupled to mass spectrometry. Experimental assays were used to determine the effects of LMP1 and its downstream pathway on the function and glucose metabolism of NKTCL cells. The correlations between LMP1 expression in patients and their clinical features, treatment response, and prognosis were analyzed. Results show that LMP1 enhances NKTCL cell proliferation in vitro and in vivo, inhibits apoptosis, and decreases gemcitabine sensitivity. In addition, LMP1 also enhances aerobic glycolysis in NKTCL cells, as indicated by increases in glucose uptake, lactate production, and extracellular acidification rate. Clinically, LMP1 expression is correlated with risk stratification, treatment response, and prognosis, and higher LMP1 expression indicates greater SUVmax for NKTCL patients. Mechanistically, LMP1 competitively binds to TRAF3 to promote cell proliferation and aerobic glycolysis by regulating the noncanonical NF-κB pathway. The application of an NF-κB pathway inhibitor or reactivation of the NF-κB pathway affects aerobic glycolysis and the biological function of NKTCL cells. In summary, this study is the first to describe and define in detail how LMP1 affects glucose metabolism in NKTCL and might provide a novel perspective for further treatment.

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LMP1能增强自然杀伤/T细胞淋巴瘤的有氧糖酵解。
自然杀伤/T细胞淋巴瘤(NKTCL)具有高度侵袭性的临床表现,复发/难治患者的预后仍然很差。最近,尚未完全明确的 Epstein-Barr 病毒(EBV)感染在 NKTCL 中的作用机制引起了人们的极大关注。我们通过代谢测序结合 mRNA 测序和免疫沉淀耦合质谱法,探索了 LMP1 如何促进有氧糖酵解。实验测定了LMP1及其下游通路对NKTCL细胞功能和糖代谢的影响。分析了患者体内 LMP1 表达与其临床特征、治疗反应和预后之间的相关性。结果显示,LMP1能增强体外和体内NKTCL细胞的增殖,抑制细胞凋亡,降低吉西他滨的敏感性。此外,LMP1 还能增强 NKTCL 细胞的有氧糖酵解,表现为葡萄糖摄取、乳酸生成和细胞外酸化率的增加。在临床上,LMP1 的表达与风险分层、治疗反应和预后相关,LMP1 表达越高,表明 NKTCL 患者的 SUVmax 越大。从机理上讲,LMP1 与 TRAF3 竞争性结合,通过调节非经典 NF-κB 通路促进细胞增殖和有氧糖酵解。应用 NF-κB 通路抑制剂或重新激活 NF-κB 通路会影响有氧糖酵解和 NKTCL 细胞的生物功能。总之,本研究首次详细描述和定义了 LMP1 如何影响 NKTCL 的糖代谢,为进一步治疗提供了新的视角。
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来源期刊
Cell Death & Disease
Cell Death & Disease CELL BIOLOGY-
CiteScore
15.10
自引率
2.20%
发文量
935
审稿时长
2 months
期刊介绍: Brought to readers by the editorial team of Cell Death & Differentiation, Cell Death & Disease is an online peer-reviewed journal specializing in translational cell death research. It covers a wide range of topics in experimental and internal medicine, including cancer, immunity, neuroscience, and now cancer metabolism. Cell Death & Disease seeks to encompass the breadth of translational implications of cell death, and topics of particular concentration will include, but are not limited to, the following: Experimental medicine Cancer Immunity Internal medicine Neuroscience Cancer metabolism
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