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选择性 ATM 抑制增强辐射诱导的炎症信号传导和癌细胞死亡

英文原题:Selective ATM inhibition augments radiation-induced inflammatory signaling and cancer cell death.

查看英文原题

Selective ATM inhibition augments radiation-induced inflammatory signaling and cancer cell death.

PubMed 2023/01/17(内容时间) Aging (Albany NY)

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中文摘要

超过一半的癌症患者接受放射治疗,但更有效的分子靶向药物联合策略仍存在未满足的需求。DNA损伤应答已成为提高放射抗肿瘤效果的重要干预点,目前有多种抑制剂正在开发中。共济失调毛细血管扩张突变(ATM)激酶是细胞对DNA双链断裂应答的关键调控因子,也是放射增敏的潜在靶点。

我们最近报道了两种新的强效选择性ATM抑制剂M3541和M4076,它们在临床相关动物模型中有效增敏癌细胞对放射的敏感性并使人类异种移植瘤消退。

在此,我们深入研究了暴露于ATM抑制剂的受照射癌细胞中的细胞事件。抑制ATM活性可抑制放射诱导的ATM信号传导,并消除G1检查点激活,导致细胞死亡增强。

我们的数据表明,进入有丝分裂时多条染色体出现严重结构异常是细胞杀伤增加的主要机制。排列异常和分离异常导致多个微核形成,并通过cGAS/STING/TBK1通路强烈激活干扰素应答和炎症信号传导。在M3541存在下暴露于放射的癌细胞在与健康供者NK细胞共培养时更易被杀伤。

此外,在暴露于M3541后存活的受照射癌细胞中观察到PD-L1表达强烈上调。STING通路和PD-L1的同时激活提示,放射、ATM抑制剂和PD-L1靶向治疗的联合可能为局部晚期肿瘤的放射免疫治疗提供一种新方法。

展开英文摘要原文

Over half of all cancer patients undergo radiation therapy but there is an unmet need for more efficacious combination strategies with molecular targeted drugs. DNA damage response has emerged as an important intervention point for improving anti-tumor effects of radiation and several inhibitors are currently in development. Ataxia telangiectasia mutated (ATM) kinase is a key regulator of cellular response to DNA double strand breaks and a potential target for radiosensitization.

We recently reported two new potent and selective ATM inhibitors, M3541 and M4076, that effectively sensitize cancer cells to radiation and regress human xenografts in clinically relevant animal models.

Here, we dive deeper into the cellular events in irradiated cancer cells exposed to ATM inhibitors. Suppression of ATM activity inhibited radiation-induced ATM signaling and abrogated G1 checkpoint activation resulting in enhanced cell death.

Our data indicated that entry into mitosis with gross structural abnormalities in multiple chromosomes is the main mechanism behind the increased cell killing. Misalignment and mis-segregation led to formation of multiple micronuclei and robust activation of the interferon response and inflammatory signaling via the cGAS/STING/TBK1 pathway. Cancer cells exposed to radiation in the presence of M3541 were more susceptible to killing in co-culture with NK cells from healthy donors.

In addition, strong upregulation of PD-L1 expression was observed in the surviving irradiated cancer cells exposed to M3541. Simultaneous activation of the STING pathway and PD-L1 suggested that combination of radiation, ATM inhibitors and PD-L1 targeted therapy may offer a novel approach to radio-immunotherapy of locally advanced tumors.

论文信息

作者
Chiu LY、Sun Q、Zenke FT、Blaukat A、Vassilev LT
单位
Translational Innovation Platform Oncology and Immuno-Oncology, EMD Serono, Billerica, MA 01821, USA.United States
文献类型
非美国政府资助研究
期刊
Aging2023 Jan 17
原文标识
PubMed 36656721 · DOI 10.18632/aging.204487