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SLC1A1 介导谷氨酰胺成瘾并促进自然杀伤 T 细胞淋巴瘤进展,具有免疫治疗潜力

英文原题:SLC1A1 mediated glutamine addiction and contributed to natural killer T-cell lymphoma progression with immunotherapeutic potential.

PubMed 2021/10/07(内容时间) EBioMedicine Q1 · IF 11.2(JCR 2025)

研究概要

SLC1A1作为细胞外谷氨酰胺转运体发挥作用,通过重编程NKTCL的谷氨酰胺代谢促进肿瘤生长,同时使肿瘤细胞对天冬酰胺酶治疗敏感。此外,SLC1A1介导的PD-L1表达调控可能为NKTCL中联合靶向代谢脆弱性和免疫抑制微环境提供临床依据。

研究思路结论见上方概要

代谢重编程在淋巴瘤进展中发挥重要作用。谷氨酰胺代谢失调与自然杀伤T细胞淋巴瘤(NKTCL)及肿瘤细胞对基于天冬酰胺酶的抗代谢治疗的反应有关。

为了解代谢组学改变并确定天冬酰胺酶的潜在治疗靶点,我们使用液相色谱-质谱法评估了36例NKTCL患者血清样本的代谢组学特征,并整合了102例NKTCL患者肿瘤样本的靶向代谢分析和RNA测序。进一步在NK淋巴瘤细胞系NK-92和SNK-6中体外检测了溶质载体家族1成员1(SLC1A1)对代谢通量、淋巴瘤细胞生长和药物敏感性的生物学功能,并在斑马鱼异种移植模型中进行了体内检测。

在NKTCL患者中,血清代谢组学特征表现为谷氨酰胺代谢异常,SLC1A1被鉴定为谷氨酰胺分解改变的核心调节因子。在体外和体内,SLC1A1的异位表达均增加了细胞谷氨酰胺摄取,增强了谷胱甘肽代谢通量,并诱导了谷氨酰胺成瘾,从而导致细胞增殖和肿瘤生长加速。值得注意的是,SLC1A1过表达与PD-L1下调及与外周血单个核细胞共培养时细胞毒性CD3+/CD8+ T细胞活性降低显著相关。天冬酰胺酶治疗可抵消SLC1A1介导的谷氨酰胺成瘾,恢复SLC1A1诱导的受损T细胞免疫。在临床上,高EAAT3(SLC1A1编码蛋白)表达独立预测了90例接受以天冬酰胺酶为基础方案治疗的NKTCL患者更优的无进展生存期和总生存期。

展开英文摘要原文

BACKGROUND: Metabolic reprogramming plays an essential role on lymphoma progression. Dysregulation of glutamine metabolism is implicated in natural-killer T-cell lymphoma (NKTCL) and tumor cell response to asparaginase-based anti-metabolic treatment. METHODS: To understand the metabolomic alterations and determine the potential therapeutic target of asparaginase, we assessed metabolomic profile using liquid chromatography-mass spectrometry in serum samples of 36 NKTCL patients, and integrated targeted metabolic analysis and RNA sequencing in tumor samples of 102 NKTCL patients. The biological function of solute carrier family 1 member 1 (SLC1A1) on metabolic flux, lymphoma cell growth, and drug sensitivity was further examined in vitro in NK-lymphoma cell line NK-92 and SNK-6, and in vivo in zebrafish xenograft models. FINDINGS: In NKTCL patients, serum metabolomic profile was characterized by aberrant glutamine metabolism and SLC1A1 was identified as a central regulator of altered glutaminolysis. Both in vitro and in vivo, ectopic expression of SLC1A1 increased cellular glutamine uptake, enhanced glutathione metabolic flux, and induced glutamine addiction, leading to acceleration of cell proliferation and tumor growth. Of note, SLC1A1 overexpression was significantly associated with PD-L1 downregulation and reduced cytotoxic CD3+/CD8+ T cell activity when co-cultured with peripheral blood mononuclear cells. Asparaginase treatment counteracted SLC1A1-mediated glutamine addiction, restored SLC1A1-induced impaired T-cell immunity. Clinically, high EAAT3 (SLC1A1-encoded protein) expression independently predicted superior progression-free and overall survival in 90 NKTCL patients treated with asparaginase-based regimens. INTERPRETATION: SLC1A1 functioned as an extracellular glutamine transporter, promoted tumor growth through reprogramming glutamine metabolism of NKTCL, while rendered tumor cells sensitive to asparaginase treatment. Moreover, SLC1A1-mediated modulation of PD-L1 expression might provide clinical rationale of co-targeting metabolic vulnerability and immunosuppressive microenvironment in NKTCL. FUNDING: This study was supported, in part, by research funding from the National Natural Science Foundation of China (82130004, 81830007 and 81900192), Chang Jiang Scholars Program, Shanghai Municipal Education Commission Gaofeng Clinical Medicine Grant Support (20152206 and 20152208), Clinical Research Plan of SHDC (2020CR1032B), Multicenter Clinical Research Project by Shanghai Jiao Tong University School of Medicine (DLY201601), Shanghai Chenguang Program (19CG15), Shanghai Sailing Program (19YF1430800), Medical-Engineering Cross Foundation of Shanghai Jiao Tong University (ZH2018QNA46), and Shanghai Yi Yuan Xin Xing Program.

论文信息

作者
Xiong J、Wang N、Zhong HJ、Cui BW、Cheng S、Sun R、Chen JY、Xu PP
第一作者单位
Shanghai Institute of Hematology, State Key Laboratory of Medical Genomics, National Research Center for Translational Medicine, Ruijin Hospital affiliated to Shanghai Jiao Tong University School of Medicine, Shanghai, China.China
通讯作者单位
Shanghai Institute of Hematology, State Key Laboratory of Medical Genomics, National Research Center for Translational Medicine, Ruijin Hospital affiliated to Shanghai Jiao Tong University School of Medicine, Shanghai, China; Pôle de Recherches Sino-Français en Science du Vivant et Génomique, Laboratory of Molecular Pathology, Shanghai, China. Electronic address: zhao.weili@yahoo.com.China
期刊
EBioMedicine2021 Oct
原文标识
PubMed 34628354 · DOI 10.1016/j.ebiom.2021.103614