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Helicobacter pylori CagA oncoprotein interacts with SHIP2 to increase its delivery into gastric epithelial cells

机译:幽门螺杆菌CagA癌蛋白与SHIP2相互作用增加其向胃上皮细胞的递送

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摘要

Chronic infection with ‐positive strains is causally associated with the development of gastric diseases, most notably gastric cancer. The ‐encoded CagA protein, which is injected into gastric epithelial cells by bacterial type IV secretion, undergoes tyrosine phosphorylation at the Glu‐Pro‐Ile‐Tyr‐Ala (EPIYA) segments (EPIYA‐A, EPIYA‐B, EPIYA‐C, and EPIYA‐D), which are present in various numbers and combinations in its C‐terminal polymorphic region, thereby enabling CagA to promiscuously interact with SH2 domain‐containing host cell proteins, including the prooncogenic SH2 domain‐containing protein tyrosine phosphatase 2 (SHP2). Perturbation of host protein functions by aberrant complex formation with CagA has been considered to contribute to the development of gastric cancer. Here we show that SHIP2, an SH2 domain‐containing phosphatidylinositol 5′‐phosphatase, is a hitherto undiscovered CagA‐binding host protein. Similar to SHP2, SHIP2 binds to the Western CagA‐specific EPIYA‐C segment or East Asian CagA‐specific EPIYA‐D segment through the SH2 domain in a tyrosine phosphorylation‐dependent manner. In contrast to the case of SHP2, however, SHIP2 binds more strongly to EPIYA‐C than to EPIYA‐D. Interaction with CagA tethers SHIP2 to the plasma membrane, where it mediates production of phosphatidylinositol 3,4‐diphosphate [PI(3,4)P ]. The CagA‐SHIP2 interaction also potentiates the morphogenetic activity of CagA, which is caused by CagA‐deregulated SHP2. This study indicates that initially delivered CagA interacts with SHIP2 and thereby strengthens ‐host cell attachment by altering membrane phosphatidylinositol compositions, which potentiates subsequent delivery of CagA that binds to and thereby deregulates the prooncogenic phosphatase SHP2.
机译:慢性阳性菌株的感染与胃部疾病的发展有因果关系,尤其是胃癌。通过细菌IV型分泌注入到胃上皮细胞中的编码CagA蛋白在Glu-Pro-Ile-Tyr-Ala(EPIYA)段(EPIYA-A,EPIYA-B,EPIYA-C,和EPIYA‐D),它们在其C末端多态性区域以各种数量和组合形式存在,从而使CagA可以与含SH2域的宿主细胞蛋白混杂相互作用,包括促原性的含SH2域的蛋白酪氨酸磷酸酶2(SHP2 )。通过与CagA形成异常复合物来扰动宿主蛋白功能已被认为有助于胃癌的发展。在这里,我们显示SHIP2,一种含有SH2结构域的磷脂酰肌醇5'-磷酸酶,是迄今为止尚未发现的结合CagA的宿主蛋白。与SHP2相似,SHIP2通过酪氨酸磷酸化依赖性方式通过SH2域与西方CagA特异性EPIYA-C片段或东亚CagA特异性EPIYA-D片段结合。与SHP2相比,SHIP2与EPIYA-C的结合比与EPIYA-D的结合更牢固。与CagA系链SHIP2相互作用至质膜,在其中介导磷脂酰肌醇3,4-二磷酸[PI(3,4)P]的产生。 CagA‐SHIP2相互作用还增强了CagA的形态发生活性,这是由CagA脱附的SHP2引起的。这项研究表明,最初交付的CagA与SHIP2相互作用,从而通过改变膜磷脂酰肌醇的成分来增强宿主细胞的附着,从而增强了随后交付的CagA的结合,从而使促原性磷酸酶SHP2失调。

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