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.
英文原题:PARP inhibition elicits NK cell-associated immune evasion via potentiating HLA-G expression in tumor.
PARP inhibition elicits NK cell-associated immune evasion via potentiating HLA-G expression in tumor.
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聚ADP-核糖聚合酶抑制剂(PARPi)耐药是提高癌症治疗疗效的一项重大挑战。除肿瘤细胞内在机制外,肿瘤免疫微环境的调节对于决定药物干预的应答也至关重要。
因此,亟需阐明PARPi与抗肿瘤免疫应答之间的复杂相互作用,并开发优化的联合治疗方案。本研究分析了一项前瞻性临床试验(NCT04507841)中患者接受PARPi尼拉帕利新辅助单药治疗前后的配对肿瘤样本,发现治疗后自然杀伤(NK)细胞浸润显著增加。
然而,这一变化并未伴随预期的细胞毒功能增强,凸显了通过提高NK细胞细胞毒能力来优化其抗肿瘤潜力的必要性。暴露于尼拉帕利后,肿瘤细胞(尤其是EGFR野生型细胞)的人白细胞抗原G(HLA-G)表达显著上调;HLA-G是一种抑制NK细胞功能的免疫检查点。尼拉帕利促进EGFR内化,继而减弱AKT/mTOR信号,导致转录因子EB(TFEB)转录活性增强,随后HLA-G表达上升。在体外,尼拉帕利联合阻断HLA-G不仅增强了NK细胞介导的肿瘤裂解;在人源化患者来源异种移植模型中,该联合疗法还协同抑制肿瘤生长。
总之,我们的结果揭示了一种此前未获认识的免疫逃逸机制,并有力支持在癌症治疗中将HLA-G阻断与PARPi联合应用。
Resistance to poly(ADP-ribose) polymerase inhibitors (PARPi) poses a significant challenge to enhancing the efficacy of cancer treatments. Beyond the cellular mechanisms intrinsic to tumor cells, the modulation of the tumor immune microenvironment is crucial in dictating the responsiveness to pharmacological interventions.
Thus, there is a pressing need to elucidate the intricate interplay between PARPi and antitumor immune responses and to develop an optimized combinatorial therapeutic approach. In this study, using matched tumor samples before and after neoadjuvant monotherapy with the PARPi niraparib in a prospective clinical trial (NCT04507841), we observed a significant increase in natural killer (NK) cell infiltration post-treatment.
However, this was not accompanied by the expected enhancement in their cytotoxic functions. This observation underscores the necessity to optimize the antitumor potential of NK cells by enhancing their cytotoxic capabilities. Upon exposure to niraparib, tumor cells, particularly those with wild-type EGFR, exhibited a pronounced upregulation of human leukocyte antigen G (HLA-G), an immune checkpoint impeding NK cell functions.
Niraparib promotes EGFR internalization, which in turn diminishes AKT/mTOR signaling, leading to the increased transcriptional activity of the transcription factor EB (TFEB) and subsequent enhancement of HLA-G expression.
The combination of niraparib with HLA-G blockade not only augmented NK cell-mediated tumor lysis in vitro but also synergistically inhibited tumor growth in humanized patient-derived xenograft models. Collectively, our results shed light on a previously unrecognized immune evasion mechanism and offer a compelling argument for the integration of HLA-G blockade with PARPi in cancer therapy.
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