首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >The C-Terminal Disulfide Bonds of Helicobacter pylori GroES Are Critical for IL-8 Secretion via the TLR4-Dependent Pathway in Gastric Epithelial Cells
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The C-Terminal Disulfide Bonds of Helicobacter pylori GroES Are Critical for IL-8 Secretion via the TLR4-Dependent Pathway in Gastric Epithelial Cells

机译:幽门螺杆菌GroES的C端二硫键对于在胃上皮细胞中通过TLR4依赖性途径分泌IL-8至关重要。

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Helicobacter pylori GroES (HpGroES), a potent immunogen, is a secreted virulence factor that stimulates production of proinflammatory cytokines and may contribute to gastric carcinogenesis. HpGroES is larger than other bacterial orthologs because of an additional C-terminal region, known as domain B. We found that the HpGroES-induced IL-8 release by human gastric epithelial cells was dependent on activation of the MAPK and NF-kappa B pathways. HpGroES lacking domain B was unable to induce IL-8 release. Additionally, a TLR4 inhibitor significantly inhibited IL-8 secretion and reduced HpGroES-induced activation of MAPKs. Furthermore, HpGroES-induced IL-8 release by primary gastric epithelial cells from TLR4(-/-) mice was significantly lower than from wild-type mice. We also found that HpGroES bound to TLR4 in cell lysates and colocalized with TLR4 on the cell membrane only when domain B was present. We then constructed two deletion mutants lacking C-terminal regions and mutants with point mutations of two of the four cysteine residues, C111 and C112, in domain B and found that the deletion mutants and a double mutant lacking the C94-C111 and C95-C112 disulfide bonds were unable to interact with TLR4 or induce IL-8 release. We conclude that HpGroES, in which a unique conformational structure, domain B, is generated by these two disulfide bonds, induces IL-8 secretion via a TLR4-dependent mechanism.
机译:幽门螺杆菌GroES(HpGroES)是一种有效的免疫原,是一种分泌的致病因子,可刺激促炎性细胞因子的产生,并可能导致胃癌发生。 HpGroES比其他细菌直系同源基因大,因为还有一个额外的C端区域,即结构域B。我们发现,HpGroES诱导的人胃上皮细胞释放IL-8取决于MAPK和NF-κB途径的激活。缺乏结构域B的HpGroES无法诱导IL-8释放。此外,TLR4抑制剂可显着抑制IL-8分泌并减少HpGroES诱导的MAPK激活。此外,HpGroES诱导的TLR4(-/-)小鼠原代胃上皮细胞的IL-8释放明显低于野生型小鼠。我们还发现,只有当结构域B存在时,HpGroES才能与细胞裂解物中的TLR4结合并与TLR4在细胞膜上共定位。然后,我们在结构域B中构建了两个缺少C端区域的缺失突变体和四个半胱氨酸残基C111和C112中的两个具有点突变的突变体,发现缺失突变体和一个缺少C94-C111和C95-C112的双重突变体二硫键无法与TLR4相互作用或诱导IL-8释放。我们得出的结论是,HpGroES通过这两个二硫键生成独特的构象结构域B,通过TLR4依赖性机制诱导IL-8分泌。

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