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Inhibition of Porphyromonas gingivalis hemagglutinating activity by synthetic peptides derived from phage display selection using MAb against the recombinant outer membrane protein.

机译:通过使用MAb针对重组外膜蛋白的噬菌体展示选择衍生的合成肽对牙龈卟啉单胞菌血凝活性的抑制。

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Porphyromonas gingivalis has been implicated as an pathogen in the development of periodontitis, and hemagglutinins have been identified as an important adhesion onto the gingival tissue cells, and to attach and lyse erythrocytes to uptake Fe ion as an essential nutriant. The 40-kDa outer membrane protein (OMP) has been moleculary cloned from P. gingivalis 381. Since the antibody against recombinant (r) 40-kDa OMP inhibited the hemagglutinating activity, and the polymeric form of r40-kDa OMP itself expressed hemagglutinating activity, the 40-kDa OMP is thought to be one of the hemagglutinins. Moreover, we established MAbs against r40-kDa OMP which were capable of inhibiting hemagglutinating activity of P. gingivalis vesicles. In the present study, a phage-displayed epitope mapping system was used to identify the functional domain expressing hemagglutinating activity by biopanning using the neutralizing mAb, Pg-ompA1. The minimal epitope requirements of the MAb and the predicted amino acid sequences were identified in the region of (96)IALDQTLGIP(105) in 40-kDa OMP. Synthetic peptide, (87)WPRVGQLFIALDQTLGIPTFSVCRME(116), mapped the relevant molecule within a short stretch and is corresponding to residues of 40-kDa OMP. Chemically synthesized peptide was used to determine its inhibitory activity against hemagglutinating activity. The synthetic peptide significantly abolished hemagglutinating activity in a dose-dependent manner. These findings suggest that the synthetic peptide is an effective antagonist of erythrocyte binding, and this peptide may be a potent inhibitor of hemagglutination of P. gingivalis cells. The use of synthetic peptide neutralizing hemagglutinating activity of P. gingivalis represents a possible new therapeutic approach to P. gingivalis infected periodontitis.
机译:牙龈卟啉单胞菌已被认为是牙周炎发展中的病原体,血凝素已被确认为对牙龈组织细胞的重要粘附,并附着和溶解红细胞以摄取铁离子作为必需营养素。已从齿龈假单胞菌381分子克隆了40 kDa外膜蛋白(OMP)。由于针对重组(r)40 kDa OMP的抗体抑制了血凝活性,r40-kDa OMP的聚合形式本身表达了血凝活性。 40 kDa OMP被认为是血凝素之一。此外,我们建立了针对r40-kDa OMP的单克隆抗体,它们能够抑制牙龈卟啉单胞菌囊泡的血凝活性。在本研究中,使用噬菌体展示的抗原决定簇定位系统通过使用中和单克隆抗体Pg-ompA1进行生物淘选来鉴定表达血凝活性的功能域。在40 kDa OMP中的(96)IALDQTLGIP(105)区域中确定了MAb的最低表位要求和预测的氨基酸序列。合成肽(87)WPRVGQLFIALDQTLGIPTFSVCRME(116)在短时间内定位了相关分子,并对应于40 kDa OMP的残基。化学合成的肽用于确定其对血凝活性的抑制活性。合成肽以剂量依赖性方式显着消除了血凝活性。这些发现表明,合成的肽是红细胞结合的有效拮抗剂,并且该肽可能是牙龈卟啉单胞菌血凝的有效抑制剂。使用合成肽中和牙龈卟啉单胞菌的血凝活性代表了对牙龈卟啉单胞菌感染的牙周炎的一种可能的新治疗方法。

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