Zhang Minsi, Qiu Qiong, Li Zhizhong, Sachdeva Mohit, Min Hooney, Cardona Diana M, DeLaney Thomas F, Han Tracy, Ma Yan, Luo Lixia, Ilkayeva Olga R, Lui Ki, Nichols Amanda G, Newgard Christopher B, Kastan Michael B, Rathmell Jeffrey C, Dewhirst Mark W, Kirsch David G
a Department of Pharmacology and Cancer Biology, Duke University, Durham, North Carolina; Departments of.
b Radiation Oncology.
Radiat Res. 2015 Jun;183(6):594-609. doi: 10.1667/RR14016.1. Epub 2015 May 14.
Hypoxia is a major cause of radiation resistance, which may predispose to local recurrence after radiation therapy. While hypoxia increases tumor cell survival after radiation exposure because there is less oxygen to oxidize damaged DNA, it remains unclear whether signaling pathways triggered by hypoxia contribute to radiation resistance. For example, intratumoral hypoxia can increase hypoxia inducible factor 1 alpha (HIF-1α), which may regulate pathways that contribute to radiation sensitization or radiation resistance. To clarify the role of HIF-1α in regulating tumor response to radiation, we generated a novel genetically engineered mouse model of soft tissue sarcoma with an intact or deleted HIF-1α. Deletion of HIF-1α sensitized primary sarcomas to radiation exposure in vivo. Moreover, cell lines derived from primary sarcomas lacking HIF-1α, or in which HIF-1α was knocked down, had decreased clonogenic survival in vitro, demonstrating that HIF-1α can promote radiation resistance in a cell autonomous manner. In HIF-1α-intact and -deleted sarcoma cells, radiation-induced reactive oxygen species, DNA damage repair and activation of autophagy were similar. However, sarcoma cells lacking HIF-1α had impaired mitochondrial biogenesis and metabolic response after irradiation, which might contribute to radiation resistance. These results show that HIF-1α promotes radiation resistance in a cell autonomous manner.
缺氧是导致放射抗性的主要原因,这可能会增加放射治疗后局部复发的可能性。虽然缺氧会增加辐射暴露后肿瘤细胞的存活率,因为用于氧化受损DNA的氧气较少,但目前尚不清楚缺氧触发的信号通路是否会导致放射抗性。例如,肿瘤内缺氧会增加缺氧诱导因子1α(HIF-1α),它可能调节有助于放射增敏或放射抗性的通路。为了阐明HIF-1α在调节肿瘤对辐射反应中的作用,我们构建了一种新型的基因工程小鼠软组织肉瘤模型,该模型中HIF-1α完整或缺失。HIF-1α的缺失使原发性肉瘤在体内对辐射暴露敏感。此外,源自缺乏HIF-1α的原发性肉瘤或HIF-1α被敲低的细胞系,在体外的克隆存活能力下降,表明HIF-1α可以以细胞自主方式促进放射抗性。在HIF-1α完整和缺失的肉瘤细胞中,辐射诱导的活性氧、DNA损伤修复和自噬激活情况相似。然而,缺乏HIF-1α的肉瘤细胞在照射后线粒体生物发生和代谢反应受损,这可能导致放射抗性。这些结果表明,HIF-1α以细胞自主方式促进放射抗性。