车站3
STAT蛋白
幽门螺杆菌
分子生物学
电泳迁移率测定
信号转导
化学
免疫印迹
下调和上调
转录因子
活性氧
生物
癌症研究
细胞生物学
生物化学
基因
遗传学
作者
Juan‐Yu Piao,Hee Geum Lee,Su‐Jung Kim,Do‐Hee Kim,Hyeong‐jun Han,Hoang‐Kieu‐Chi Ngo,Sin‐Aye Park,Jeong‐Hwa Woo,Jeong‐Sang Lee,Hye‐Kyung Na,Young‐Nam Cha,Young‐Joon Surh
出处
期刊:Helicobacter
[Wiley]
日期:2016-02-23
卷期号:21 (5): 405-416
被引量:68
摘要
Abstract Background Recent studies have shown that Helicobacter pylori ( H. pylori ) activates signal transducer and activator of transcription 3 (STAT3) that plays an important role in gastric carcinogenesis. However, the molecular mechanism underlying H. pylori ‐mediated STAT3 activation is still not fully understood. In this study, we investigated H. pylori ‐induced activation of STAT3 signaling in AGS human gastric cancer cells and the underlying mechanism. Materials and Methods AGS cells were cocultured with H. pylori , and STAT3 activation was assessed by Western blot analysis, electrophoretic mobility shift assay and immunocytochemistry. To demonstrate the involvement of reactive oxygen species (ROS) in H. pylori ‐activated STAT3 signaling, the antioxidant N ‐acetylcysteine was utilized. The expression and production of interleukin‐6 (IL‐6) were measured by reverse‐transcription polymerase chain reaction and enzyme‐linked immunosorbent assay (ELISA), respectively. The interaction between IL‐6 and IL‐6 receptor (IL‐6R) was determined by the immunoprecipitation assay. Results H. pylori activates STAT3 as evidenced by increases in phosphorylation on Tyr 705 , nuclear localization, DNA binding and transcriptional activity of this transcription factor. The nuclear translocation of STAT3 was also observed in H. pylori ‐inoculated mouse stomach. In the subsequent study, we found that H. pylori ‐induced STAT3 phosphorylation was dependent on IL‐6. Notably, the increased IL‐6 expression and the IL‐6 and IL‐6R binding were mediated by ROS produced as a consequence of H. pylori infection. Conclusions H. pylori ‐induced STAT3 activation is mediated, at least in part, through ROS‐induced upregulation of IL‐6 expression. These findings provide a novel molecular mechanism responsible for H. pylori ‐induced gastritis and gastric carcinogenesis.
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