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硒蛋白X基因敲低加重H2O2诱导的肝脏LO2细胞凋亡。

Selenoprotein X Gene Knockdown Aggravated H2O2-Induced Apoptosis in Liver LO2 Cells.

作者信息

Tang Jiayong, Cao Lei, Li Qiang, Wang Longqiong, Jia Gang, Liu Guangmang, Chen Xiaoling, Cai Jingyi, Shang Haiying, Zhao Hua

机构信息

Animal Nutrition Institute, Sichuan Agricultural University, No 211 Huimin Road, Chengdu, Sichuan, 611130, China.

Sichuan Provincial General Station for Animal Husbandry, Chengdu, 610041, China.

出版信息

Biol Trace Elem Res. 2016 Sep;173(1):71-8. doi: 10.1007/s12011-016-0653-z. Epub 2016 Feb 22.

Abstract

To determine the roles of selenoprotein X gene (Selx) in protecting liver cells against oxidative damage, the influences of Selx knockdown on H2O2-induced apoptosis in human normal hepatocyte (LO2) cells were studied. pSilencer 3.1 was used to develop knockdown vector targeting the 3'-UTR of human Selx. The Selx knockdown and control cells were further exposed to H2O2, and cell viability, cell apoptosis rate, and the expression levels of mRNA and protein of apoptosis-related genes were detected. The results showed that vector targeting the 3'-UTR of Selx successfully silenced mRNA or protein expression of SelX in LO2 cells. Selx knockdown resulted in decreased cell viability, increased percentage of early apoptotic cells, decreased Bcl2A1 and Bcl-2 expression, and increased phosphorylation of P38 in LO2 cells. When Selx knockdown LO2 cells were exposed to H2O2, characteristics of H2O2-induced cell dysfunctions were further exacerbated. Taken together, our findings suggested that SelX played important roles in protecting LO2 cells against oxidative damage and reducing H2O2-induced apoptosis in liver cells.

摘要

为了确定硒蛋白X基因(Selx)在保护肝细胞免受氧化损伤中的作用,研究了Selx基因敲低对过氧化氢(H2O2)诱导的人正常肝细胞(LO2)细胞凋亡的影响。使用pSilencer 3.1构建靶向人Selx基因3'-非翻译区(3'-UTR)的敲低载体。将Selx基因敲低的细胞和对照细胞进一步暴露于H2O2中,检测细胞活力、细胞凋亡率以及凋亡相关基因的mRNA和蛋白质表达水平。结果表明,靶向Selx基因3'-UTR的载体成功沉默了LO2细胞中SelX的mRNA或蛋白质表达。Selx基因敲低导致LO2细胞活力降低、早期凋亡细胞百分比增加、Bcl2A1和Bcl-2表达降低以及P38磷酸化增加。当Selx基因敲低的LO2细胞暴露于H2O2时,H2O2诱导的细胞功能障碍特征进一步加剧。综上所述,我们的研究结果表明,SelX在保护LO2细胞免受氧化损伤和减少H2O2诱导的肝细胞凋亡中发挥重要作用。

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