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胶质母细胞瘤的凋亡敏感性增加使其成为 BH3 模拟物治疗的靶点。

Increased apoptotic sensitivity of glioblastoma enables therapeutic targeting by BH3-mimetics.

机构信息

Cancer Research UK Beatson Institute, Glasgow, G61 1BD, UK.

Institute of Cancer Sciences, University of Glasgow, Glasgow, G61 1BD, UK.

出版信息

Cell Death Differ. 2022 Oct;29(10):2089-2104. doi: 10.1038/s41418-022-01001-3. Epub 2022 Apr 26.

Abstract

Glioblastoma (GBM) is the most prevalent malignant primary brain tumour in adults. GBM typically has a poor prognosis, mainly due to a lack of effective treatment options leading to tumour persistence or recurrence. We investigated the therapeutic potential of targeting anti-apoptotic BCL-2 proteins in GBM. Levels of anti-apoptotic BCL-xL and MCL-1 were consistently increased in GBM compared with non-malignant cells and tissue. Moreover, we found that relative to their differentiated counterparts, patient-derived GBM stem-like cells also displayed higher expression of anti-apoptotic BCL-2 family members. High anti-apoptotic BCL-xL and MCL-1 expression correlated with heightened susceptibility of GBM to BCL-2 family protein-targeting BH3-mimetics. This is indicative of increased apoptotic priming. Indeed, GBM displayed an obligate requirement for MCL-1 expression in both tumour development and maintenance. Investigating this apoptotic sensitivity, we found that sequential inhibition of BCL-xL and MCL-1 led to robust anti-tumour responses in vivo, in the absence of overt toxicity. These data demonstrate that BCL-xL and MCL-1 pro-survival function is a fundamental prerequisite for GBM survival that can be therapeutically exploited by BH3-mimetics.

摘要

胶质母细胞瘤(GBM)是成人中最常见的恶性原发性脑肿瘤。GBM 的预后通常较差,主要是由于缺乏有效的治疗选择,导致肿瘤持续存在或复发。我们研究了靶向抗凋亡 BCL-2 蛋白在 GBM 中的治疗潜力。与非恶性细胞和组织相比,抗凋亡 BCL-xL 和 MCL-1 的水平在 GBM 中始终升高。此外,我们发现与分化细胞相比,患者来源的 GBM 干细胞样细胞也表现出更高的抗凋亡 BCL-2 家族成员表达。高抗凋亡 BCL-xL 和 MCL-1 表达与 GBM 对 BCL-2 家族蛋白靶向 BH3 模拟物的敏感性增加有关。这表明凋亡的引发增加。事实上,GBM 在肿瘤的发生和维持中都需要表达 MCL-1。研究这种凋亡敏感性,我们发现 BCL-xL 和 MCL-1 的顺序抑制导致体内抗肿瘤反应增强,而没有明显的毒性。这些数据表明,BCL-xL 和 MCL-1 的生存促进功能是 GBM 生存的基本前提,可以通过 BH3 模拟物进行治疗性利用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a15/9525582/23ec1d56b80c/41418_2022_1001_Fig1_HTML.jpg

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