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H3K27M 弥漫性中线胶质瘤存在同源重组缺陷,PARP 抑制使其对放疗和 NK 细胞介导的抗肿瘤免疫敏感

英文原题:H3K27M diffuse midline glioma is homologous recombination defective and sensitized to radiotherapy and NK cell-mediated antitumor immunity by PARP inhibition.

查看英文原题

H3K27M diffuse midline glioma is homologous recombination defective and sensitized to radiotherapy and NK cell-mediated antitumor immunity by PARP inhibition.

PubMed 2025/09/17(内容时间) Neuro Oncol Q1 · IF 13.1(JCR 2025)

研究概要

H3K27M DMG中的HRR缺陷可利用PARP抑制剂进行治疗性增敏,并在H3K27M DMG中选择性诱导NK细胞介导的抗肿瘤免疫应答,支持在DMG患者中开展PARP1抑制剂联合RT的临床研究。

中文摘要

背景:放疗(RT)是致死性儿童恶性肿瘤弥漫性中线胶质瘤(DMG)的主要治疗方式,该病以组蛋白H3第27位赖氨酸突变为甲硫氨酸(H3K27M)为特征。由于H3K27三甲基化丢失会造成广泛表观基因组改变,我们假设H3K27M会导致功能性双链断裂(DSB)修复缺陷,可利用PARP抑制剂联合RT选择性增强放射敏感性并诱发抗肿瘤免疫应答。方法:采用H3K27M同基因背景DMG细胞,以及免疫缺陷和同系免疫健全小鼠的原位脑干DMG肿瘤,评估PARP1/2抑制剂奥拉帕利或PARP1选择性抑制剂AZD9574联合RT的疗效及机制。结果:H3K27M突变导致同源重组修复(HRR)缺陷,表现为RT诱导的组蛋白H1 K63连接多聚泛素化受损及HRR蛋白募集受抑。与同基因对照相比,奥拉帕利可选择性增强H3K27M DMG细胞的放射敏感性,该效应也在H3K27M原位脑干肿瘤中体现为治疗获益。奥拉帕利联合RT诱导先天免疫应答及NK细胞激活配体(NKG2D配体)表达,进而增强NK细胞介导的DMG细胞裂解。在免疫健全同系原位DMG模型中,奥拉帕利或AZD9574联合RT可增加肿瘤内NK细胞浸润和活性,并与NK细胞介导的治疗应答相关,AZD9574显示良好活性。结论:可利用H3K27M DMG的HRR缺陷,通过PARP抑制剂选择性增强放射敏感性并诱发NK细胞介导的抗肿瘤免疫应答,支持在DMG患者中临床研究PARP1抑制剂联合RT。

展开英文摘要原文

BACKGROUND: Radiotherapy (RT) is the primary treatment for diffuse midline glioma (DMG), a lethal pediatric malignancy defined by histone H3 lysine 27-to-methionine (H3K27M) mutation. Based on the loss of H3K27 trimethylation producing broad epigenomic alterations, we hypothesized that H3K27M causes a functional double-strand break (DSB) repair defect that could be leveraged therapeutically with PARP inhibitor and RT for selective radiosensitization and antitumor immune response. METHODS: H3K27M isogenic DMG cells and orthotopic brainstem DMG tumors in immune deficient and syngeneic, immune competent mice were used to evaluate the efficacy and mechanisms of PARP1/2 inhibition by olaparib or PARP1-selective inhibition by AZD9574 with concurrent RT. RESULTS: H3K27M mutation caused a homologous recombination repair (HRR) defect characterized by impaired RT-induced K63-linked polyubiquitination of histone H1 and inhibition of HRR protein recruitment. H3K27M DMG cells were selectively radiosensitized by olaparib in comparison to isogenic controls, and this effect translated to efficacy in H3K27M orthotopic brainstem tumors. Olaparib and RT induced an innate immune response and induction of NK cell (NKG2D) activating ligands leading to increased NK cell-mediated lysis of DMG cells. In immunocompetent syngeneic orthotopic DMG tumors, either olaparib or AZD9574 in combination with RT enhanced intratumoral NK cell infiltration and activity in association with NK cell-mediated therapeutic responses and favorable activity of AZD9574. CONCLUSIONS: The HRR deficiency in H3K27M DMG can be therapeutically leveraged with PARP inhibitors to radiosensitize and induce an NK cell-mediated antitumor immune response selectively in H3K27M DMG, supporting the clinical investigation of PARP1 inhibitors with RT in DMG patients.

论文信息

作者
Guo Y、Li Z、Parsels LA、Wang Z、Parsels JD、Dalvi A、The S、Hu N
第一作者单位
Department of Radiation Oncology, University of Michigan, Ann Arbor, Michigan, USA.United States
通讯作者单位
Rogel Cancer Center, University of Michigan, Ann Arbor, Michigan, USA.United States
期刊
Neuro-oncology2025 Sep 17
原文标识
PubMed 40207661 · DOI 10.1093/neuonc/noaf097