Joiner K, Hieny S, Kirchhoff L V, Sher A
J Exp Med. 1985 May 1;161(5):1196-212. doi: 10.1084/jem.161.5.1196.
We examined the interaction of complement component C3 with surface molecules on Trypanosoma cruzi. Five- to six-fold more C3 was bound to epimastigotes (Epi) than to metacyclic trypomastigotes (CMT) of strain M88. Epi and CMT were surface iodinated, then incubated in C8-deficient serum, and detergent lysates were applied to anti-C3 antibody that had been coupled to Sepharose. We found that 9.20-10.24% of applied 125I-Epi protein bound to anti-C3-sepharose, compared to 2.64% binding of 125I-CMT protein. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis showed that C3 was attached to 125I-Epi protein by a covalent bond. Samples eluted from anti-C3-sepharose with hydroxylamine revealed a single, major, 72 kD band, suggesting that C3b attaches almost exclusively to the 72 kD glycoprotein of Epi by a hydroxylamine-susceptible ester bond. An antiserum was prepared from lysates of serum-treated Epi that had been affinity-purified on anti-C3-sepharose. This antiserum immunoprecipitated a single 72 kD component (gp72) from surface-iodinated Epi, and specifically recognized only gp72 from Epi in immunoblots. In contrast to the results with Epi, gp72 on CMT was not found to be an efficient acceptor molecule for C3 deposition. The results are the first to evaluate the acceptor site for C3 deposition on a parasite, and they show that gp72 on Epi, but not gp72 on CMT, serves as the preferential acceptor for C3 during antibody-independent alternative complement pathway activation.
我们研究了补体成分C3与克氏锥虫表面分子的相互作用。与M88株的循环后期锥鞭毛体(CMT)相比,附着于无鞭毛体(Epi)的C3多5至6倍。对Epi和CMT进行表面碘化,然后在C8缺陷血清中孵育,将去污剂裂解物应用于与琼脂糖偶联的抗C3抗体。我们发现,与125I-CMT蛋白2.64%的结合率相比,应用的125I-Epi蛋白中有9.20 - 10.24%与抗C3-琼脂糖结合。十二烷基硫酸钠-聚丙烯酰胺凝胶电泳显示C3通过共价键附着于125I-Epi蛋白。用羟胺从抗C3-琼脂糖洗脱的样品显示出一条单一的、主要的72 kD条带,表明C3b几乎仅通过对羟胺敏感的酯键附着于Epi的72 kD糖蛋白。用在抗C3-琼脂糖上亲和纯化的经血清处理的Epi裂解物制备了一种抗血清。该抗血清从表面碘化的Epi中免疫沉淀出单一的72 kD成分(gp72),并且在免疫印迹中仅特异性识别来自Epi的gp72。与Epi的结果相反,未发现CMT上的gp72是C3沉积的有效受体分子。这些结果首次评估了寄生虫上C3沉积的受体位点,并且表明Epi上的gp72而非CMT上的gp72在抗体非依赖性替代补体途径激活过程中作为C3的优先受体。