Soteriadou K P, Remoundos M S, Katsikas M C, Tzinia A K, Tsikaris V, Sakarellos C, Tzartos S J
Department of Biochemistry, Hellenic Pasteur Institute, Athens, Greece.
J Biol Chem. 1992 Jul 15;267(20):13980-5.
The major surface glycoprotein of Leishmania, gp63, a fibronectin-like molecule, plays a key role in parasite-macrophage interaction. Binding of gp63 to macrophage receptors is inhibited by Arg-Gly-Asp-Ser (RGDS)-containing synthetic peptides of fibronectin and by antibodies to these peptides. However, gp63 lacks an RGDS tetrapeptide. We sought to identify the region of gp63 that antigenically and functionally mimics the RGDS-containing region of fibronectin. We thus synthesized on polyethylene rods overlapping tetracosapeptides covering the whole sequence of Leishmania major gp63. gp63 affinity-purified antibodies raised against fibronectin and against the RGDS-containing fibronectin decapeptide RGDSPASSKP bound specifically to gp63 residues 241-264. Subsequently, by the use of smaller peptides, the gp63 tetrapeptide 252-255 (SRYD) was identified as the minimum antibody binding segment. Single residue substitution peptide analogues showed that indeed Tyr and Gly can be alternatively substituted in the SRYD- and RGDS-containing peptides of gp63 and fibronectin, respectively, without major effects on their antibody binding capacity. Subsequently, we investigated the effect of an SRYD peptide on promastigote-macrophage interaction in vitro; treatment of macrophages with an SRYD-containing gp63 octapeptide efficiently inhibited parasite attachment to macrophage receptors. Thus, the conserved among species sequence SRYD of gp63, with significant hydrophilicity, flexibility, and beta-turn propensity features, mimics antigenically and functionally the RGDS sequence of fibronectin. We suggest that this segment constitutes the putative gp63 adhesion site.
利什曼原虫的主要表面糖蛋白gp63是一种纤连蛋白样分子,在寄生虫与巨噬细胞的相互作用中起关键作用。纤连蛋白含精氨酸 - 甘氨酸 - 天冬氨酸 - 丝氨酸(RGDS)的合成肽以及针对这些肽的抗体可抑制gp63与巨噬细胞受体的结合。然而,gp63缺乏RGDS四肽。我们试图确定gp63中在抗原性和功能上模拟纤连蛋白含RGDS区域的部分。因此,我们在聚乙烯棒上合成了覆盖大利什曼原虫gp63整个序列的重叠二十四肽。用针对纤连蛋白和含RGDS的纤连蛋白十肽RGDSPASSKP亲和纯化的gp63抗体,能特异性结合gp63的241 - 264位残基。随后,通过使用更小的肽段,确定gp63的四肽252 - 255(SRYD)为最小抗体结合片段。单残基取代肽类似物表明,在gp63和纤连蛋白含SRYD和RGDS的肽段中,酪氨酸(Tyr)和甘氨酸(Gly)确实可以分别被替代,而对它们的抗体结合能力没有重大影响。随后,我们研究了SRYD肽对体外前鞭毛体 - 巨噬细胞相互作用的影响;用含SRYD的gp63八肽处理巨噬细胞可有效抑制寄生虫与巨噬细胞受体的附着。因此,gp63在物种间保守的序列SRYD,具有显著的亲水性、柔韧性和β - 转角倾向特征,在抗原性和功能上模拟了纤连蛋白的RGDS序列。我们认为该片段构成了假定的gp63黏附位点。