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首页> 外文期刊>Cellular microbiology >Importance of EGF receptor, HER2/Neu and Erk1/2 kinase signalling for host cell elongation and scattering induced by the Helicobacter pylori CagA protein: antagonistic effects of the vacuolating cytotoxin VacA
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Importance of EGF receptor, HER2/Neu and Erk1/2 kinase signalling for host cell elongation and scattering induced by the Helicobacter pylori CagA protein: antagonistic effects of the vacuolating cytotoxin VacA

机译:EGF受体,HER2 / Neu和Erk1 / 2激酶信号转导对幽门螺杆菌CagA蛋白诱导的宿主细胞延长和散射的重要性:空泡细胞毒素VacA的拮抗作用

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摘要

Helicobacter pylori is the causative agent of gastric pathologies ranging from chronic gastritis to peptic ulcers and even cancer. Virulent strains carrying both the cag pathogenicity island (cagPAI) and the vacuolating cytotoxin VacA are key players in disease development. The cagPAI encodes a type IV secretion system (T4SS) which forms a pilus for injection of the CagA protein into gastric epithelial cells. Injected CagA undergoes tyrosine phosphorylation and induces actin-cytoskeletal rearrangements involved in host cell scattering and elongation. We show here that the CagA-induced responses can be inhibited in strains expressing highly active VacA. Further investigations revealed that VacA does not interfere with known activities of phosphorylated CagA such as inactivation of Src kinase and cortactin dephosphorylation. Instead, we demonstrate that VacA exhibits inactivating activities on the epidermal growth factor receptor EGFR and HER2/Neu, and subsequently Erk1/2 MAP kinase which are important for cell scattering and elongation. Inactivation of vacA gene, downregulation of the VacA receptor RPTP-alpha, addition of EGF or expression of constitutive-active MEK1 kinase restored the capability of H. pylori to induce the latter phenotypes. These data demonstrate that VacA can downregulate CagA's effects on epithelial cells, a novel molecular mechanism showing how H. pylori can avoid excessive cellular damage.
机译:幽门螺杆菌是从慢性胃炎到消化性溃疡甚至癌症的胃病的病因。携带cag致病岛(cagPAI)和空泡细胞毒素VacA的强毒株是疾病发展的关键因素。 cagPAI编码IV型分泌系统(T4SS),该系统形成菌毛,用于将CagA蛋白注射到胃上皮细胞中。注射的CagA经历酪氨酸磷酸化并诱导肌动蛋白-细胞骨架重排,参与宿主细胞的散射和伸长。我们在这里显示,CagA诱导的反应可以在表达高活性VacA的菌株中得到抑制。进一步的研究表明,VacA不会干扰磷酸化CagA的已知活性,例如Src激酶的失活和Cortactin的去磷酸化。相反,我们证明VacA对表皮生长因子受体EGFR和HER2 / Neu以及随后的Erk1 / 2 MAP激酶具有灭活活性,这对于细胞的散射和伸长很重要。 vacA基因失活,VacA受体RPTP-α的下调,EGF的添加或组成型活性MEK1激酶的表达恢复了幽门螺杆菌诱导后者表型的能力。这些数据表明,VacA可以下调CagA对上皮细胞的作用,这是一种新颖的分子机制,表明幽门螺杆菌可以避免过度的细胞损伤。

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