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幽门螺杆菌空泡毒素(VacA)的p-33和p-55结构域之间的相互作用

Interactions between p-33 and p-55 domains of the Helicobacter pylori vacuolating cytotoxin (VacA).

作者信息

Torres Victor J, McClain Mark S, Cover Timothy L

机构信息

Department of Microbiology and Immunology, Vanderbilt University School of Medicine, Nashville, TN 37232-2605, USA.

出版信息

J Biol Chem. 2004 Jan 16;279(3):2324-31. doi: 10.1074/jbc.M310159200. Epub 2003 Oct 30.

Abstract

The VacA toxin secreted by Helicobacter pylori is considered to be an important virulence factor in the pathogenesis of peptic ulcer disease and gastric cancer. VacA monomers self-assemble into water-soluble oligomeric structures and can form anion-selective membrane channels. The goal of this study was to characterize VacA-VacA interactions that may mediate assembly of VacA monomers into higher order structures. We investigated potential interactions between two domains of VacA (termed p-33 and p-55) by using a yeast two-hybrid system. p-33/p-55 interactions were detected in this system, whereas p-33/p-33 and p-55/p-55 interactions were not detected. Several p-33 proteins containing internal deletion mutations were unable to interact with wild-type p-55 in the yeast two-hybrid system. Introduction of these same deletion mutations into the H. pylori vacA gene resulted in secretion of mutant VacA proteins that failed to assemble into large oligomeric structures and that lacked vacuolating toxic activity for HeLa cells. Additional mapping studies in the yeast two-hybrid system indicated that only the N-terminal portion of the p-55 domain is required for p-33/p-55 interactions. To characterize further p-33/p-55 interactions, we engineered an H. pylori strain that produced a VacA toxin containing an enterokinase cleavage site located between the p-33 and p-55 domains. Enterokinase treatment resulted in complete proteolysis of VacA into p-33 and p-55 domains, which remained physically associated within oligomeric structures and retained vacuolating cytotoxin activity. These results provide evidence that interactions between p-33 and p-55 domains play an important role in VacA assembly into oligomeric structures.

摘要

幽门螺杆菌分泌的VacA毒素被认为是消化性溃疡疾病和胃癌发病机制中的一种重要毒力因子。VacA单体自组装成水溶性寡聚结构,并可形成阴离子选择性膜通道。本研究的目的是表征可能介导VacA单体组装成更高阶结构的VacA-VacA相互作用。我们使用酵母双杂交系统研究了VacA的两个结构域(称为p-33和p-55)之间的潜在相互作用。在该系统中检测到了p-33/p-55相互作用,而未检测到p-33/p-33和p-55/p-55相互作用。几种含有内部缺失突变的p-33蛋白在酵母双杂交系统中无法与野生型p-55相互作用。将这些相同的缺失突变引入幽门螺杆菌vacA基因导致突变VacA蛋白的分泌,这些蛋白无法组装成大型寡聚结构,并且对HeLa细胞缺乏空泡化毒性活性。酵母双杂交系统中的进一步定位研究表明,p-33/p-55相互作用仅需要p-55结构域的N端部分。为了进一步表征p-33/p-55相互作用,我们构建了一种幽门螺杆菌菌株,该菌株产生的VacA毒素在p-33和p-55结构域之间含有肠激酶切割位点。肠激酶处理导致VacA完全蛋白水解为p-33和p-55结构域,它们在寡聚结构中保持物理结合并保留空泡化细胞毒素活性。这些结果提供了证据,表明p-33和p-55结构域之间的相互作用在VacA组装成寡聚结构中起重要作用。

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