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H. pylori-encoded CagA disrupts tight junctions and induces invasiveness of AGS gastric carcinoma cells via Cdx2-dependent targeting of Claudin-2

机译:幽门螺杆菌编码的CagA通过依赖Cdx2靶向Claudin-2破坏紧密连接并诱导AGS胃癌细胞的侵袭性

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Helicobacter pylori encoded CagA is presently the only known virulence factor that is injected into gastric epithelial cells where it destroys apical junctional complexes and induces dedifferentiation of gastric epithelial cells, leading to H. pylori-related gastric carcinogensis. However, little is known about the molecular mechanisms by which CagA mediates these changes. Caudal-related homeobox 2 (Cdx2) is an intestine-specific transcription factor highly expressed in multistage tissues of dysplasia and cancer. One specific target of Cdx2, Claudin-2, is involved in the regulation of tight junction (TJ) permeability. In this study, our findings showed that the activity of Cdx2 binding to Cdx binding sites of CdxA (GTTTATG) and CdxB (TTTTAGG) of probes corresponding to claudin-2 flanking region increased in AGS cells, infected with CagA positive wild-type strain of H. pylori, compared to CagA negative isogenic mutant-type strain. Moreover, Cdx2 upregulated claudin-2 expression at transcriptional level and translational level. In the meantime, we found that TJs of AGS cells, infected with CagA positive wild-type strain of H. pylori, compared to CagA negative isogenic mutant-type strain, were more severely destroyed, leading to wider cell gap, interference of contact, scattering and highly elevated migration of cells. Herein, this study is firstly demonstrated that H. pylori-encoded CagA disrupts TJs and induces invasiveness of AGS gastric carcinoma cells via Cdx2-dependent targeting of Claudin-2. This provides a new mechanism whereby CagA induced dedifferentiation of AGS cells, leading to malignant behavior of biology.
机译:幽门螺杆菌编码的CagA是目前唯一已知的注入到胃上皮细胞中的毒力因子,在其中它会破坏顶端连接复合物并诱导胃上皮细胞去分化,从而导致幽门螺杆菌相关的胃癌发生。但是,人们对CagA介导这些变化的分子机制知之甚少。尾端相关同源盒2(Cdx2)是在发育异常和癌症的多阶段组织中高表达的肠道特异性转录因子。 Cdx2的一个特定靶标Claudin-2与紧密连接(TJ)渗透性的调节有关。在这项研究中,我们的研究结果表明,在感染了CagA阳性野生型AGS的AGS细胞中,对应于claudin-2侧翼区的探针的Cdx2与CdxA(GTTTATG)和CdxB(TTTTAGG)的Cdx结合位点的结合活性增加。与CagA阴性同基因突变型菌株相比,幽门螺杆菌。此外,Cdx2在转录水平和翻译水平上调了claudin-2的表达。同时,我们发现与CagA阴性同基因突变型菌株相比,感染了CagA阳性野生型幽门螺杆菌的AGS细胞的TJ受到更严重的破坏,从而导致更大的细胞间隙,接触干扰,分散和高度迁移的细胞。本文中,这项研究首先证明,幽门螺杆菌编码的CagA通过Cdx2依赖性Claudin-2靶向破坏TJs并诱导AGS胃癌细胞的侵袭性。这提供了一种新的机制,由此CagA诱导AGS细胞去分化,从而导致生物学的恶性行为。

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