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靶向 CISH 增强自然细胞毒性受体信号传导并减少 NK 细胞耗竭以改善实体瘤免疫

英文原题:Targeting CISH enhances natural cytotoxicity receptor signaling and reduces NK cell exhaustion to improve solid tumor immunity.

PubMed 2022/05/01(内容时间) J Immunother Cancer Q1 · IF 11.7(JCR 2025)

研究概要

本研究是理解Cish靶向以释放实体瘤中NK细胞抗肿瘤功能的机制及安全性的关键一步。我们的结果验证了CISH作为一个新兴的治疗靶点,可增强NK细胞免疫疗法。

研究思路结论见上方概要

当前免疫疗法的成功与局限性推动了研究向替代方法的开发以及其他细胞毒性免疫细胞(如自然杀伤(NK)细胞)操控可能性的探索。在此,我们靶向NK细胞中的一种细胞内抑制蛋白“细胞因子诱导型SH2含蛋白”(CISH),以评估其对其功能和抗肿瘤特性的影响。

为了进一步了解 CISH 在 NK 细胞中的功能,我们构建了 NK 细胞条件性 Cish 缺陷小鼠模型(Cish fl/fl Ncr1 Ki/+)。在体外评估了 NK 细胞的细胞因子表达、信号传导和细胞毒性。通过静脉注射 B16F10 黑色素瘤细胞系和 EO711 三阴性乳腺癌细胞系,进行了转移评估。随后进行了乳腺肿瘤的原位植入,并使用生物发光法追踪肿瘤生长。评估了肿瘤中 NK 细胞的浸润和表型。最后,我们使用结合 CRISPR(i)-dCas9 工具与新型慢病毒假型的技术,靶向人类 NK-92 或原代 NK 细胞中的 CISH。随后我们检测了人类 NK 细胞的功能。

在Cish fl/fl Ncr1 Ki/+小鼠中,我们未检测到NK细胞在发育或稳态方面的差异。与Cish +/+ Ncr1 Ki/+ NK细胞相比,Cish fl/fl Ncr1 Ki/+ NK细胞的全局基因表达揭示了与NK细胞周期和活化相关的通路和基因上调。我们证明CISH不仅调控interleukin-15(IL-15)信号通路,还调控natural cytotoxicity receptors(NCR)通路,从而触发CISH蛋白表达。经预处理的Cish fl/fl Ncr1 Ki/+ NK细胞在NCR刺激下表现出增强的活化。Cish fl/fl Ncr1 Ki/+ NK细胞表现出较低的活化阈值,且Cish fl/fl Ncr1 Ki/+小鼠对肿瘤转移和原发性乳腺癌生长更具抵抗力。CISH缺失有利于NK细胞向原发肿瘤积聚,优化NK细胞杀伤特性并降低TIGIT免疫检查点受体表达,从而限制NK细胞耗竭。最后,我们使用CRISPRi靶向人NK-92或原代NK细胞中的CISH。在人NK细胞中,CISH缺失同样有利于NCR信号传导和抗肿瘤功能。

展开英文摘要原文

BACKGROUND: The success and limitations of current immunotherapies have pushed research toward the development of alternative approaches and the possibility to manipulate other cytotoxic immune cells such as natural killer (NK) cells. Here, we targeted an intracellular inhibiting protein 'cytokine inducible SH2-containing protein' (CISH) in NK cells to evaluate the impact on their functions and antitumor properties. METHODS: To further understand CISH functions in NK cells, we developed a conditional Cish-deficient mouse model in NK cells ( Cish fl/fl Ncr1 Ki/+ ). NK cells cytokine expression, signaling and cytotoxicity has been evaluated in vitro. Using intravenous injection of B16F10 melanoma cell line and EO711 triple negative breast cancer cell line, metastasis evaluation was performed. Then, orthotopic implantation of breast tumors was performed and tumor growth was followed using bioluminescence. Infiltration and phenotype of NK cells in the tumor was evaluated. Finally, we targeted CISH in human NK-92 or primary NK cells, using a technology combining the CRISPR(i)-dCas9 tool with a new lentiviral pseudotype. We then tested human NK cells functions. RESULTS: In Cish fl/fl Ncr1 Ki/+ mice, we detected no developmental or homeostatic difference in NK cells. Global gene expression of Cish fl/fl Ncr1 Ki/+ NK cells compared with Cish +/+ Ncr1 Ki/+ NK cells revealed upregulation of pathways and genes associated with NK cell cycling and activation. We show that CISH does not only regulate interleukin-15 (IL-15) signaling pathways but also natural cytotoxicity receptors (NCR) pathways, triggering CISH protein expression. Primed Cish fl/fl Ncr1 Ki/+ NK cells display increased activation upon NCR stimulation. Cish fl/fl Ncr1 Ki/+ NK cells display lower activation thresholds and Cish fl/fl Ncr1 Ki/+ mice are more resistant to tumor metastasis and to primary breast cancer growth. CISH deletion favors NK cell accumulation to the primary tumor, optimizes NK cell killing properties and decreases TIGIT immune checkpoint receptor expression, limiting NK cell exhaustion. Finally, using CRISPRi, we then targeted CISH in human NK-92 or primary NK cells. In human NK cells, CISH deletion also favors NCR signaling and antitumor functions. CONCLUSION: This study represents a crucial step in the mechanistic understanding and safety of Cish targeting to unleash NK cell antitumor function in solid tumors. Our results validate CISH as an emerging therapeutic target to enhance NK cell immunotherapy.

论文信息

作者
Bernard PL、Delconte R、Pastor S、Laletin V、Costa Da Silva C、Goubard A、Josselin E、Castellano R
第一作者单位
Immunity and Cancer Team, Onco-Hemato Immuno-Onco Department, OHIO, Institut Paoli-Calmettes, Inserm, CNRS, Cancer Research Centre, CRCM, Marseille, France.United States
通讯作者单位
Immunity and Cancer Team, Onco-Hemato Immuno-Onco Department, OHIO, Institut Paoli-Calmettes, Inserm, CNRS, Cancer Research Centre, CRCM, Marseille, France geoffrey.guittard@inserm.fr.United States
期刊
Journal for immunotherapy of cancer2022 May
原文标识
PubMed 35589278 · DOI 10.1136/jitc-2021-004244