RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Sirtuins and tumor immunity: mechanistic insights, immunotherapy prospects, and therapeutic horizons.
Sirtuins and tumor immunity: mechanistic insights, immunotherapy prospects, and therapeutic horizons.
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Sirtuins(SIRTs)是一类NAD+依赖性酶家族,在肿瘤生物学中表现出复杂且有时相互对立的功能。这些酶既可作为肿瘤抑制因子,也可作为肿瘤促进因子,取决于细胞环境、肿瘤类型和代谢状态。本综述提供了SIRT同工型对关键致癌过程调控的机制性概述,包括增殖、转移、代谢重编程和化疗耐药。特别强调其在肿瘤微环境(TME)中的免疫调节作用,其中SIRTs影响T细胞分化、免疫检查点表达、巨噬细胞极化和NK 细胞功能。SIRT驱动的通路,如烟酰胺磷酸核糖转移酶(NAMPT)-SIRT1-程序性细胞死亡配体1(PD-L1)轴、SIRT6诱导的调节性T细胞(Treg)形成以及SIRT2驱动的T细胞活化,被审视其对免疫逃逸或免疫增强的影响以及对免疫治疗反应的影响。本综述还探讨了SIRTs如何促进化疗耐药背后的适应性机制,包括自噬、上皮-间质转化(EMT)、氧化还原平衡和线粒体保护。评估了靶向SIRTs的治疗前景,讨论了同工型选择性调节剂、与检查点阻断的联合策略以及利用其环境依赖性活性的挑战。SIRTs被确立为肿瘤免疫和治疗的关键调控因子,为精准肿瘤学提供了新方向。
然而,鉴于其在不同肿瘤类型中同工型和环境依赖的双重性,SIRT调节剂的临床转化需要仔细的机制分层和生物标志物指导的患者选择。
Sirtuins (SIRTs), a family of NAD + -dependent enzymes, exhibit complex and sometimes opposing functions in cancer biology. These enzymes can function as tumor suppressors or promoters, depending on the cellular context, tumor type, and metabolic state. This review provides a mechanistic overview of SIRT isoform regulation of key oncogenic processes, including proliferation, metastasis, metabolic reprogramming, and chemotherapy resistance. Special emphasis is given to their immunomodulatory roles within the tumor microenvironment (TME), where SIRTs influence T cell differentiation, immune checkpoint expression, macrophage polarization, and natural killer cell function.
SIRT-driven pathways, such as the nicotinamide phosphoribosyltransferase (NAMPT)-SIRT1-programmed Cell Death Ligand 1 (PD-L1) axis, SIRT6-induced regulatory T cell (Treg) formation, and SIRT2-driven T cell activation, are examined for their effects on immune escape or enhancement and their impact on immunotherapy responses. The review also explores how SIRTs contribute to adaptive mechanisms underlying chemoresistance, including autophagy, epithelial-mesenchymal transition (EMT), redox balance, and mitochondrial protection.
The therapeutic landscape of targeting SIRTs is assessed, with discussion of isoform-selective modulators, combination strategies with checkpoint blockade, and challenges in leveraging their context-dependent activities. SIRTs are established as crucial regulators of cancer immunity and therapy, suggesting novel directions for precision oncology.
However, given their isoform- and context-dependent duality across tumor types, the clinical translation of SIRT modulators requires careful mechanistic stratification and biomarker-guided patient selection.
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