Talamás-Rohana P, Wright S D, Lennartz M R, Russell D G
Department of Pathology, NYU Medical Center, NY 10016.
J Immunol. 1990 Jun 15;144(12):4817-24.
The abundant surface glycolipid, promastigote lipophosphoglycan (LPG), of Leishmania promastigotes was isolated and reconstituted onto the surface of hydrophobic silica beads. These beads bound to both macrophages and monocytes, suggesting that phagocytes possess a receptor(s) capable of recognizing LPG. LPG beads were unable to bind to macrophages isolated from individuals with a genetic deficiency in the CD18 complex of leukocyte integrins (CR3, p150,95, and LFA-1), suggesting that one or more of these receptors were required for binding of LPG. Individual members of the CD18 complex were depleted from macrophages by plating cells on surfaces coated with anti-receptor mAb. These experiments indicated that CR3 and p150,95 from the CD18 complex, were the predominant mediators of attachment of LPG. The phagocyte receptor CR3 expresses two distinct binding sites, one that binds peptide ligands, such as C3bi, and a second site, that recognizes bacterial LPS. Antibody inhibition experiments and competition binding studies with synthetic peptides and soluble LPG indicated that LPG is recognized by the nonpeptide, or "LPS" binding site on CR3.
利什曼原虫前鞭毛体丰富的表面糖脂——前鞭毛体脂磷壁酸(LPG)被分离出来,并重新构建于疏水硅胶珠表面。这些珠子能与巨噬细胞和单核细胞结合,这表明吞噬细胞拥有能够识别LPG的一种或多种受体。LPG珠无法与从白细胞整合素CD18复合体(CR3、p150,95和LFA-1)存在基因缺陷的个体中分离出的巨噬细胞结合,这表明LPG结合需要这些受体中的一种或多种。通过将细胞接种在包被有抗受体单克隆抗体的表面,可使巨噬细胞中的CD18复合体各成员减少。这些实验表明,CD18复合体中的CR3和p150,95是LPG附着的主要介质。吞噬细胞受体CR3表达两个不同的结合位点,一个结合肽配体,如C3bi,另一个位点识别细菌脂多糖。抗体抑制实验以及与合成肽和可溶性LPG的竞争结合研究表明,LPG是被CR3上的非肽或“脂多糖”结合位点识别的。