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Helicobacter pylori virulence factor CagA promotes tumorigenesis of gastric cancer via multiple signaling pathways

机译:幽门螺杆菌毒力因子CagA通过多种信号途径促进胃癌的发生

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摘要

Helicobacter pylori (H. pylori) infection is strongly associated with the development of gastric diseases but also with several extragastric diseases. The clinical outcomes caused by H. pylori infection are considered to be associated with a complex combination of host susceptibility, environmental factors and bacterial isolates. Infections involving H. pylori strains that possess the virulence factor CagA have a worse clinical outcome than those involving CagA-negative strains. It is remarkable that CagA-positive H. pylori increase the risk for gastric cancer over the risk associated with H. pylori infection alone. CagA behaves as a bacterial oncoprotein playing a key role in H. pylori-induced gastric cancer. Activation of oncogenic signaling pathways and inactivation of tumor suppressor pathways are two crucial events in the development of gastric cancer. CagA shows the ability to affect the expression or function of vital protein in oncogenic or tumor suppressor signaling pathways via several molecular mechanisms, such as direct binding or interaction, phosphorylation of vital signaling proteins and methylation of tumor suppressor genes. As a result, CagA continuously dysregulates of these signaling pathways and promotes tumorigenesis. Recent research has enriched our understanding of how CagA effects on these signaling pathways. This review summarizes the results of the most relevant studies, discusses the complex molecular mechanism involved and attempts to delineate the entire signaling pathway.
机译:幽门螺杆菌(H. pylori)感染与胃疾病的发展密切相关,但也与几种胃外疾病密切相关。由幽门螺杆菌感染引起的临床结果被认为与宿主易感性,环境因素和细菌分离物的复杂组合有关。涉及具有毒力因子CagA的幽门螺杆菌菌株的感染,其临床结果要比涉及CagA阴性菌株的感染更差。值得注意的是,与单独与幽门螺杆菌感染相关的风险相比,CagA阳性幽门螺杆菌增加了胃癌的风险。 CagA表现为细菌癌蛋白,在幽门螺杆菌诱导的胃癌中起关键作用。致癌信号通路的激活和肿瘤抑制子通路的失活是胃癌发展中的两个关键事件。 CagA显示出通过几种分子机制(例如直接结合或相互作用,重要信号蛋白的磷酸化和肿瘤抑制基因的甲基化)影响致癌或肿瘤抑制信号通路中重要蛋白表达或功能的能力。结果,CagA不断失调这些信号通路并促进肿瘤发生。最近的研究丰富了我们对CagA如何影响这些信号通路的理解。这篇综述总结了最相关研究的结果,讨论了所涉及的复杂分子机制,并试图描绘出整个信号通路。

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