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阴道毛滴虫AP33黏附素及细胞表面相互作用结构域的表征

Characterization of Trichomonas vaginalis AP33 adhesin and cell surface interactive domains.

作者信息

Engbring J A, Alderete J F

机构信息

Department of Microbiology, The University of Texas Health Science Center,7703 Floyd Curl Drive, San Antonio, TX 78284-7758,USA.

出版信息

Microbiology (Reading). 1998 Nov;144 ( Pt 11):3011-3018. doi: 10.1099/00221287-144-11-3011.

Abstract

Adherence to host target cells is a critical step in establishing infection with the sexually transmitted pathogen Trichomonas vaginalis. Four parasite surface proteins mediating attachment to vaginal epithelial cells have been identified. One surface protein, termed AP33, was characterized further to identify domains interactive with previously generated antibodies and with host surface sites. N- and C-terminal deletion subclones were generated and tested for reactivity with both mAb and rabbit antiserum against AP33, and were also examined for their ability to bind to host cells. Surprisingly, the rabbit antiserum known to inhibit cytoadherence recognized an epitope(s) contained within 72 residues in the N-terminal half of the protein. However, the mAb epitope was immunoreactive with a 28-amino-acid region near the C-terminus. Subsequent mapping of this region with overlapping peptides identified a nine-amino-acid sequence reactive with the mAb. Equally surprising, two domains interactive with host cell surfaces were identified at distinct parts of AP33: one in the N-terminal half of the protein, and the other within 24 residues in the C-terminal third. Further analysis of the C-terminal binding domain revealed that a peptide representing this area could inhibit T. vaginalis cytoadherence by 40%.

摘要

黏附于宿主靶细胞是性传播病原体阴道毛滴虫建立感染的关键步骤。已鉴定出四种介导与阴道上皮细胞附着的寄生虫表面蛋白。对其中一种名为AP33的表面蛋白进行了进一步表征,以确定与先前产生的抗体以及宿主表面位点相互作用的结构域。构建了N端和C端缺失亚克隆,并测试其与抗AP33单克隆抗体和兔抗血清的反应性,还检测了它们与宿主细胞结合的能力。令人惊讶的是,已知能抑制细胞黏附的兔抗血清识别出该蛋白N端一半中72个残基内包含的一个表位。然而,单克隆抗体表位与C端附近一个28个氨基酸的区域具有免疫反应性。随后用重叠肽对该区域进行定位,确定了一个与单克隆抗体反应的九氨基酸序列。同样令人惊讶的是,在AP33的不同部位鉴定出两个与宿主细胞表面相互作用的结构域:一个在蛋白的N端一半,另一个在C端三分之一的24个残基内。对C端结合结构域的进一步分析表明,代表该区域的一种肽可使阴道毛滴虫细胞黏附减少40%。

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