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缺氧时Trx-1的过表达和核转位赋予HepG2细胞对顺铂的抗性,而GL-V9通过抑制Trx-1/Ref-1轴逆转这种抗性。

The overexpression and nuclear translocation of Trx-1 during hypoxia confers on HepG2 cells resistance to DDP, and GL-V9 reverses the resistance by suppressing the Trx-1/Ref-1 axis.

作者信息

Zhao Li, Li Wei, Zhou Yuxin, Zhang Yi, Huang Shaoliang, Xu Xuefen, Li Zhiyu, Guo Qinglong

机构信息

State Key Laboratory of Natural Medicines, Jiangsu Key Laboratory of Carcinogenesis and Intervention, Jiangsu Key Laboratory of Design and Optimization, Key Laboratory of Drug Quality Control and Pharmacovigilance, Ministry of Education.

School of Pharmacy, China Pharmaceutical University, Nanjing 210009, People׳s Republic of China.

出版信息

Free Radic Biol Med. 2015 May;82:29-41. doi: 10.1016/j.freeradbiomed.2015.01.014. Epub 2015 Feb 3.

DOI:10.1016/j.freeradbiomed.2015.01.014
PMID:25656992
Abstract

Microenvironmental hypoxia gives many tumor cells the capacity for drug resistance. Thioredoxin family members play critical roles in the regulation of cellular redox homeostasis in a stressed environment. In this study, we established a hypoxia-drug resistance (hypoxia-DR) model using HepG2 cells and discovered that the overexpression and nuclear translocation of thioredoxin-1 (Trx-1) are closely associated with this resistance through the regulation of the metabolism by the oxidative stress response to glycolysis. Intranuclear Trx-1 enhances the DNA-binding activity of HIF-1α via its interaction with and reducing action on Ref-1, resulting in increased expression of glycolysis-related proteins (PDHK1, HKII, and LDHA), glucose uptake, and lactate generation under hypoxia. Meanwhile, we found that GL-V9, a newly synthesized flavonoid derivative, shows an ability to reverse the hypoxia-DR and has low toxicity both in vivo and in vitro. GL-V9 could inhibit the expression and nuclear translocation of Trx-1 and then suppress HIF-1α DNA-binding activity by inhibiting the Trx-1/Ref-1 axis. As a result, glycolysis is weakened and oxidative phosphorylation is enhanced. Thus, GL-V9 leads to an increment in intracellular ROS generation and consequently intensified apoptosis induced by DDP.

摘要

微环境缺氧赋予许多肿瘤细胞耐药能力。硫氧还蛋白家族成员在应激环境下细胞氧化还原稳态的调节中发挥关键作用。在本研究中,我们利用HepG2细胞建立了缺氧耐药(hypoxia-DR)模型,并发现硫氧还蛋白-1(Trx-1)的过表达和核转位通过对糖酵解氧化应激反应的代谢调节与这种耐药密切相关。核内Trx-1通过与Ref-1相互作用并对其进行还原作用,增强HIF-1α的DNA结合活性,导致缺氧条件下糖酵解相关蛋白(PDHK1、HKII和LDHA)表达增加、葡萄糖摄取和乳酸生成增加。同时,我们发现新合成的黄酮类衍生物GL-V9具有逆转缺氧-DR的能力,且在体内外均具有低毒性。GL-V9可抑制Trx-1的表达和核转位,进而通过抑制Trx-1/Ref-1轴抑制HIF-1α的DNA结合活性。结果,糖酵解减弱,氧化磷酸化增强。因此,GL-V9导致细胞内活性氧生成增加,从而增强顺铂诱导的细胞凋亡。

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