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miR-139-5p 通过抑制 DNA 修复和 ROS 防御的多个基因网络调节乳腺癌的放射抵抗。

miR-139-5p Modulates Radiotherapy Resistance in Breast Cancer by Repressing Multiple Gene Networks of DNA Repair and ROS Defense.

机构信息

Cancer Research Division, The Kinghorn Cancer Centre/Garvan Institute of Medical Research, Sydney, New South Wales, Australia.

St Vincent's Clinical School, Faculty of Medicine, University of New South Wales, Sydney, New South Wales, Australia.

出版信息

Cancer Res. 2018 Jan 15;78(2):501-515. doi: 10.1158/0008-5472.CAN-16-3105. Epub 2017 Nov 27.

Abstract

Radiotherapy is essential to the treatment of most solid tumors and acquired or innate resistance to this therapeutic modality is a major clinical problem. Here we show that miR-139-5p is a potent modulator of radiotherapy response in breast cancer via its regulation of genes involved in multiple DNA repair and reactive oxygen species defense pathways. Treatment of breast cancer cells with a miR-139-5p mimic strongly synergized with radiation both and , resulting in significantly increased oxidative stress, accumulation of unrepaired DNA damage, and induction of apoptosis. Several miR-139-5p target genes were also strongly predictive of outcome in radiotherapy-treated patients across multiple independent breast cancer cohorts. These prognostically relevant miR-139-5p target genes were used as companion biomarkers to identify radioresistant breast cancer xenografts highly amenable to sensitization by cotreatment with a miR-139-5p mimetic. The microRNA described in this study offers a potentially useful predictive biomarker of radiosensitivity in solid tumors and a generally applicable druggable target for tumor radiosensitization. .

摘要

放射疗法对于大多数实体肿瘤的治疗至关重要,而对此治疗方式的获得性或固有耐药性是一个主要的临床问题。在这里,我们通过调节涉及多种 DNA 修复和活性氧防御途径的基因,显示 miR-139-5p 是乳腺癌放射治疗反应的有效调节剂。用 miR-139-5p 模拟物处理乳腺癌细胞与放射治疗具有强烈的协同作用,导致氧化应激显著增加,未修复的 DNA 损伤积累,并诱导细胞凋亡。在多个独立的乳腺癌队列中,miR-139-5p 的几个靶基因在接受放射治疗的患者中也具有很强的预后预测性。这些具有预后相关性的 miR-139-5p 靶基因被用作伴随生物标志物,以鉴定对 miR-139-5p 模拟物联合治疗高度敏感的放射抗性乳腺癌异种移植物。本研究中描述的 microRNA 为实体肿瘤的放射敏感性提供了一个潜在有用的预测性生物标志物,也是一种普遍适用的肿瘤放射增敏药物靶点。

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