间皮素作为癌症免疫治疗的生物标志物和治疗靶点
Mesothelin as Biomarker and Therapeutic Target for Immunotherapy in Cancer.
癌症仍是一个关键的全球健康问题,原因在于发现晚、耐药和高死亡率。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Role of CircRNA_0005075 in gastric cancer immune evasion through regulation of lactate metabolic reprogramming and histone lactylation.
Role of CircRNA_0005075 in gastric cancer immune evasion through regulation of lactate metabolic reprogramming and histone lactylation.
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本研究揭示了 circRNA_0005075 通过调控乳酸代谢重编程并诱导组蛋白乳酸化,促进 PD-L1 转录表达并介导胃癌免疫逃逸的分子机制。这一发现为理解胃癌免疫治疗疗效异质性提供了新的代谢组学-表观遗传学解释,并提示 circRNA_0005075 及其相关乳酸化状态作为潜在治疗靶点或治疗反应预测生物标志物具有研究价值。
胃癌仍是全球范围内致死率最高的恶性肿瘤之一。尽管靶向PD-1/PD-L1轴的免疫检查点抑制剂显著推动了晚期胃癌的治疗进展,但其疗效在患者间呈现明显异质性,相当一部分患者表现为原发性不敏感或迅速产生耐药。肿瘤代谢重编程及其介导的表观遗传调控被认为是限制免疫治疗疗效的重要内在机制;然而,其潜在的分子调控网络仍需进一步阐明。本研究旨在探讨circRNA_0005075在胃癌免疫逃逸中的作用及分子机制,具体分析其是否通过调控乳酸代谢重编程和组蛋白乳酸化影响免疫检查点分子PD-L1的转录表达,并进一步塑造对PD-1单克隆抗体的治疗反应。
采用胃癌细胞系与T细胞的共培养体系,结合circRNA_0005075敲低和过表达策略,评估其对T细胞细胞毒活性的影响。采用靶向代谢组学和乳酸含量测定分析肿瘤细胞的代谢改变。通过ChIP-qPCR和双荧光素酶报告基因实验评估组蛋白乳酰化及其在PD-L1启动子区域的调控作用。在体内建立小鼠肿瘤模型,并结合PD-1单克隆抗体治疗,系统评估circRNA_0005075对免疫治疗疗效的影响。
敲低circRNA_0005075显著增强了T细胞杀伤胃癌细胞的能力,并伴随GZMB和穿孔素表达的上调。代谢分析显示,circRNA_0005075下调降低了乳酸水平。机制研究表明,PD-L1启动子区域H3K9la的富集与其转录活性密切相关,且circRNA_0005075可通过乳酸代谢-乳酸化轴调控PD-L1表达。在体内模型中,敲低circRNA_0005075显著增强了PD-1单克隆抗体的抗肿瘤疗效,表现为肿瘤生长受抑和免疫效应分子上调。
Gastric cancer remains one of the most lethal malignancies worldwide. While immune checkpoint inhibitors targeting the PD-1/PD-L1 axis have significantly advanced the treatment of advanced gastric cancer, their efficacy exhibits marked heterogeneity among patients, with a substantial proportion showing primary insensitivity or rapidly developing resistance. Tumor metabolic reprogramming and the epigenetic regulation it mediates are recognized as important intrinsic mechanisms limiting the efficacy of immunotherapy; however, the underlying molecular regulatory network requires further elucidation. This study aimed to investigate the role and molecular mechanisms of circRNA_0005075 in gastric cancer immune evasion, specifically analyzing whether it influences the transcriptional expression of the immune checkpoint molecule PD-L1 by regulating lactate metabolic reprogramming and histone lactylation, and further shapes the therapeutic response to PD-1 monoclonal antibodies.
A co-culture system employing gastric cancer cell lines and T cells was used, combined with circRNA_0005075 knockdown and overexpression strategies, to assess its impact on T cell cytotoxic activity. Targeted metabolomics and lactate content measurement were employed to analyze metabolic alterations in tumor cells. Histone lactylation and their regulatory role at the PD-L1 promoter region were evaluated using ChIP-qPCR, and dual-luciferase reporter assays. In vivo, a mouse tumor model was established and treated in combination with PD-1 monoclonal antibody therapy to systematically evaluate the effect of circRNA_0005075 on immunotherapy efficacy.
Knockdown of circRNA_0005075 significantly enhanced the ability of T cells to kill gastric cancer cells, accompanied by upregulation of GZMB and perforin expression. Metabolic analysis revealed that downregulation of circRNA_0005075 reduced lactate levels. Mechanistic studies demonstrated that the enrichment of H3K9la at the PD-L1 promoter region was closely associated with its transcriptional activity, and that circRNA_0005075 could regulate PD-L1 expression through the lactate metabolism-lactylation axis. In the in vivo model, knockdown of circRNA_0005075 significantly enhanced the anti-tumor efficacy of PD-1 monoclonal antibody, as evidenced by suppressed tumor growth and upregulation of immune effector molecules.
This study reveals the molecular mechanism by which circRNA_0005075 promotes PD-L1 transcriptional expression and mediates gastric cancer immune evasion through the regulation of lactate metabolic reprogramming and the induction of histone lactylation. This finding provides a novel metabolomic-epigenetic explanation for understanding the heterogeneity in gastric cancer immunotherapy efficacy and suggests that circRNA_0005075 and its associated lactylation state hold research value as potential therapeutic targets or predictive biomarkers for treatment response.
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