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重组铁超氧化物歧化酶通过氧化还原依赖性PI3k/Akt途径对HepG2细胞的抗增殖作用。

Anti-proliferative effects of recombinant iron superoxide dismutase on HepG2 cells via a redox-dependent PI3k/Akt pathway.

作者信息

Lu Min, Bi Chong-Shan, Gong Xing-Guo, Chen Han-Min, Sheng Xie-Huang, Deng Tong-le, Xu Ke-di

机构信息

Institute of Biochemistry, Zhejiang University, Hangzhou, People's Republic of China.

出版信息

Appl Microbiol Biotechnol. 2007 Aug;76(1):193-201. doi: 10.1007/s00253-007-0939-3. Epub 2007 Mar 27.

Abstract

The coding sequence for an iron superoxide dismutase (fe-sod) was amplified from the Nostoc commune genome. Recombinant Fe-SOD was overexpressed in Escherichia coli, accounting for approximately 76% of total bacterial protein. Fe-SOD was purified from bacterial lysate by Ni-NTA column chromatography and used to generate an anti-SOD antibody. The purified Fe-SOD was encapsulated in liposomes and delivered to HepG2 liver tumor cells to eliminate cellular superoxide anions. The SOD-loaded cells exhibited lower reactive oxygen species (ROS) levels and higher reduced glutathione (GSH) levels. In Fe-SOD-treated cells, the cell cycle was delayed in the G(1) phase, and HepG2 cell growth slowed in association with dephosphorylation of the serine-threonine kinase Akt. Low-dose H(2)O(2) stimulated Akt phosphorylation, implying that Akt activation in HepG2 cells is redox-sensitive. Akt phosphorylation was abrogated by phosphatidylinositol 3-kinase (PI3K) inhibitors, suggesting that PI3K is an upstream mediator of Akt activation in HepG2 cells. This study provides insight into recombinant Fe-SOD-induced signaling mechanisms in liver tumor cells and suggests the feasibility of using Fe-SOD as an antitumor agent.

摘要

从普通念珠藻基因组中扩增出铁超氧化物歧化酶(Fe-SOD)的编码序列。重组Fe-SOD在大肠杆菌中过表达,约占细菌总蛋白的76%。通过镍-氮三乙酸(Ni-NTA)柱层析从细菌裂解物中纯化Fe-SOD,并用于制备抗SOD抗体。将纯化的Fe-SOD包裹在脂质体中,递送至HepG2肝癌细胞以清除细胞超氧阴离子。负载SOD的细胞表现出较低的活性氧(ROS)水平和较高的还原型谷胱甘肽(GSH)水平。在Fe-SOD处理的细胞中,细胞周期在G(1)期延迟,并且HepG2细胞生长减缓,同时丝氨酸-苏氨酸激酶Akt发生去磷酸化。低剂量H(2)O(2)刺激Akt磷酸化,这意味着HepG2细胞中的Akt激活对氧化还原敏感。磷脂酰肌醇3-激酶(PI3K)抑制剂可消除Akt磷酸化,表明PI3K是HepG2细胞中Akt激活的上游介质。本研究深入了解了重组Fe-SOD在肝癌细胞中诱导的信号传导机制,并表明使用Fe-SOD作为抗肿瘤药物的可行性。

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