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UCHL1-HIF-1 轴介导的癌细胞抗氧化特性作为放射增敏的治疗靶点。

UCHL1-HIF-1 axis-mediated antioxidant property of cancer cells as a therapeutic target for radiosensitization.

机构信息

Department of Radiation Oncology and Image-applied Therapy, Kyoto University Graduate School of Medicine, 54 Shogoin Kawahara-cho, Sakyo-ku, Kyoto, 606-8507, Japan.

Laboratory of Cancer Cell Biology, Department of Genome Dynamics, Radiation Biology Center, Kyoto University, Yoshida Konoe-cho, Sakyo-ku, Kyoto, 606-8501, Japan.

出版信息

Sci Rep. 2017 Jul 31;7(1):6879. doi: 10.1038/s41598-017-06605-1.

Abstract

Hypoxia-inducible factor 1 (HIF-1) has been recognized as an important mediator of the reprogramming of carbohydrate metabolic pathways from oxidative phosphorylation to accelerated glycolysis. Although this reprogramming has been associated with the antioxidant and radioresistant properties of cancer cells, gene networks triggering the HIF-1-mediated reprogramming and molecular mechanisms linking the reprogramming with radioresistance remain to be determined. Here, we show that Ubiquitin C-terminal hydrolase-L1 (UCHL1), which we previously identified as a novel HIF-1 activator, increased the radioresistance of cancer cells by producing an antioxidant, reduced glutathione (GSH), through HIF-1-mediated metabolic reprogramming. A luciferase assay to monitor HIF-1 activity demonstrated that the overexpression of UCHL1, but not its deubiquitination activity-deficient mutant (UCHL1 C90S), upregulated HIF-1 activity by stabilizing the regulatory subunit of HIF-1 (HIF-1α) in a murine breast cancer cell line, EMT6. UCHL1 overexpression induced the reprogramming of carbohydrate metabolism and increased NADPH levels in a pentose phosphate pathway (PPP)-dependent manner. The UCHL1-mediated reprogramming elevated intracellular GSH levels, and consequently induced a radioresistant phenotype in a HIF-1-dependent manner. The pharmacological inhibition of PPP canceled the UCHL1-mediated radioresistance. These results collectively suggest that cancer cells acquire antioxidant and radioresistant phenotypes through UCHL1-HIF-1-mediated metabolic reprogramming including the activation of PPP and provide a rational basis for targeting this gene network for radiosensitization.

摘要

缺氧诱导因子 1(HIF-1)已被认为是从氧化磷酸化到加速糖酵解的碳水化合物代谢途径重编程的重要介质。虽然这种重编程与癌细胞的抗氧化和放射抗性特性有关,但触发 HIF-1 介导的重编程的基因网络以及将重编程与放射抗性联系起来的分子机制仍有待确定。在这里,我们表明,我们之前鉴定为新型 HIF-1 激活剂的泛素 C 端水解酶-L1(UCHL1)通过 HIF-1 介导的代谢重编程产生抗氧化剂还原型谷胱甘肽(GSH)来增加癌细胞的放射抗性。监测 HIF-1 活性的荧光素酶测定表明,UCHL1 的过表达(但不是其去泛素化活性缺陷突变体(UCHL1 C90S))通过稳定 HIF-1 的调节亚基(HIF-1α)上调 HIF-1 活性,在小鼠乳腺癌细胞系 EMT6 中。UCHL1 过表达诱导碳水化合物代谢重编程,并以依赖 pentose phosphate pathway (PPP) 的方式增加 NADPH 水平。UCHL1 介导的重编程提高了细胞内 GSH 水平,从而以 HIF-1 依赖的方式诱导放射抗性表型。PPP 的药理学抑制消除了 UCHL1 介导的放射抗性。这些结果共同表明,癌细胞通过 UCHL1-HIF-1 介导的代谢重编程(包括 PPP 的激活)获得抗氧化和放射抗性表型,并为针对该基因网络进行放射增敏提供了合理的依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d2a/5537219/be0a69ec122a/41598_2017_6605_Fig1_HTML.jpg

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