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肝细胞癌中 eEF2K 介导的 cGAS-STING 通路增强促进 NK 细胞活化

英文原题:Enhanced NK cell activation via eEF2K-mediated potentiation of the cGAS-STING pathway in hepatocellular carcinoma.

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Enhanced NK cell activation via eEF2K-mediated potentiation of the cGAS-STING pathway in hepatocellular carcinoma.

PubMed 2024/02/05(内容时间) Int Immunopharmacol Q1 · IF 5.6(JCR 2025)

研究概要

靶向阻断 eEF2K 可能引起 cGAS-STING 通路激活,进而增强 HCC 肿瘤内 NK 细胞的浸润与活性。

中文摘要

背景:肝癌,尤其是肝细胞癌(HCC),死亡率较高,主要归因于形成免疫抑制性微环境。本研究旨在阐明真核延伸因子2激酶(eEF2K)在协调HCC肿瘤微环境中自然杀伤(NK)细胞浸润及活化方面的关键作用。通过揭示相关免疫调节机制,我们希望澄清HCC发病机制并发现潜在治疗途径。 方法:开展全面生物信息学分析,以确定eEF2K在HCC中的功能。首先,利用HCC患者的配对肿瘤及癌旁正常组织样本,检测eEF2K表达及其与预后的关系。随后纳入接受免疫治疗的HCC患者队列,考察eEF2K预测治疗疗效的能力。为深入分析机制,使用CRISPR/Cas9基因编辑建立eEF2K敲除细胞系,以验证cGAS-STING通路活化及后续细胞因子分泌。为进一步阐明eEF2K对NK细胞功能的作用,使用siRNA技术在体外有效抑制eEF2K表达。体内验证时建立荷瘤小鼠模型,比较不同治疗策略后肿瘤微环境中的NK细胞浸润和活化情况。 结果:HCC组织中eEF2K表达升高,且与较差预后相关(30.84个月比20.99个月,P=0.033)。此外,将eEF2K敲除的HepG2细胞与树突状细胞共培养可激活cGAS-STING通路,继而增加IL-2和CXCL9分泌。抑制eEF2K还显著促进NK细胞增殖并减少细胞凋亡。在小鼠模型中,联合NH125和PD-1治疗后,HCC肿瘤内NK细胞浸润显著增加。流式细胞术显示NK细胞NKG2A表达下降、NKG2D表达升高,颗粒酶B、TNF-α和IFN-γ分泌增加。免疫组化证实联合治疗小鼠重要器官未见损伤。此外,治疗小鼠外周血清中谷胱甘肽过氧化物酶和脂质过氧化水平升高。 结论:靶向阻断eEF2K可能激活cGAS-STING通路,增强NK细胞在HCC肿瘤中的浸润和活性。eEF2K抑制剂联合PD-1抗体的协同作用为HCC治疗提供了一种新颖且有前景的方案。

展开英文摘要原文

BACKGROUND: Liver cancer, particularly hepatocellular carcinoma (HCC), is characterized by a high mortality rate, attributed primarily to the establishment of an immunosuppressive microenvironment. Within this context, we aimed to elucidate the pivotal role of eukaryotic elongation factor 2 kinase (eEF2K) in orchestrating the infiltration and activation of natural killer (NK) cells within the HCC tumor microenvironment. By shedding light on the immunomodulatory mechanisms at play, our findings should clarify HCC pathogenesis and help identify potential therapeutic intervention venues. METHODS: We performed a comprehensive bioinformatics analysis to determine the functions of eEF2K in the context of HCC. We initially used paired tumor and adjacent normal tissue samples from patients with HCC to measure eEF2K expression and its correlation with prognosis. Subsequently, we enrolled a cohort of patients with HCC undergoing immunotherapy to examine the ability of eEF2K to predict treatment efficacy. To delve deeper into the mechanistic aspects, we established an eEF2K-knockout cell line using CRISPR/Cas9 gene editing. This step was crucial for verifying activation of the cGAS-STING pathway and the subsequent secretion of cytokines. To further elucidate the role of eEF2K in NK cell function, we applied siRNA-based techniques to effectively suppress eEF2K expression in vitro. For in vivo validation, we developed a tumor-bearing mouse model that enabled us to compare the infiltration and activation of NK cells within the tumor microenvironment following various treatment strategies. RESULTS: We detected elevated eEF2K expression within HCC tissues, and this was correlated with an unfavorable prognosis (30.84 vs. 20.99 months, P = 0.033). In addition, co-culturing eEF2K-knockout HepG2 cells with dendritic cells led to activation of the cGAS-STING pathway and a subsequent increase in the secretion of IL-2 and CXCL9. Moreover, inhibiting eEF2K resulted in notable NK cell proliferation along with apoptosis reduction. Remarkably, after combining NH125 and PD-1 treatments, we found a significant increase in NK cell infiltration within HCC tumors in our murine model. Our flow cytometry analysis revealed reduced NKG2A expression and elevated NKG2D expression and secretion of granzyme B, TNF- , and IFN- in NK cells. Immunohistochemical examination confirmed no evidence of damage to vital organs in the mice treated with the combination therapy. Additionally, we noted higher levels of glutathione peroxidase and lipid peroxidation in the peripheral blood serum of the treated mice. CONCLUSION: Targeted eEF2K blockade may result in cGAS-STING pathway activation, leading to enhanced infiltration and activity of NK cells within HCC tumors. The synergistic effect achieved by combining an eEF2K inhibitor with PD-1 antibody therapy represents a novel and promising approach for the treatment of HCC.

论文信息

作者
Xu Y、Sun F、Tian Y、Zeng G、Lei G、Bai Z、Wang Y、Ge X
第一作者单位
Medical School of Chinese PLA, Beijing, China; Faculty of Hepato-Pancreato-Biliary Surgery, the First Medical Center, Chinese PLA General Hospital, Institute of Hepatobiliary Surgery of Chinese PLA, Key Laboratory of Digital Hepatobiliary Surgery, PLA, Beijing, China.China
通讯作者单位
Faculty of Hepato-Pancreato-Biliary Surgery, the First Medical Center, Chinese PLA General Hospital, Institute of Hepatobiliary Surgery of Chinese PLA, Key Laboratory of Digital Hepatobiliary Surgery, PLA, Beijing, China. Electronic address: liurong@301hospital.com.cn.China
期刊
International immunopharmacology2024 Mar 10
原文标识
PubMed 38320351 · DOI 10.1016/j.intimp.2024.111628