Dickler H B
J Exp Med. 1974 Aug 1;140(2):508-22. doi: 10.1084/jem.140.2.508.
The lymphocyte receptor for complexed immunoglobulin was shown not to bind heat-aggregated human serum albumin, bovine serum albumin, transferrin, F(ab')(2), reduced and alkylated Ig, and mildly oxidized Ig, which indicated that the receptor is specific for a site dependent on disulfide bond(s) on the Fc portion of complexed Ig. Inhibition experiments provided evidence that the same receptor binds both heat-aggregated Ig and antigen-antibody complexes. Lymphocytes treated with pronase were no longer able to bind Ig complexes, which suggested that the receptor is a protein or glycoprotein. Additional evidence was obtained that lymphocyte surface Ig and the receptor for complexed Ig are distinct since the former could be capped without affecting the distribution of the latter, and surface Ig was not detectable after trypsinization of lymphocytes, whereas the binding of Ig complexes was unaffected by such treatment. Incubation of lymphocytes which had bound Ig complexes in tissue culture medium at 37 degrees C revealed that the complexes remained on the surface membrane for several hours, and that only a minority of lymphocytes binding complexes showed cap formation. Lymphocytes which had heat-aggregated IgG specifically bound to their receptors for complexed Ig were markedly inhibited in their ability to mediate antibody-dependent cytotoxicity, thus providing strong evidence for the necessity of the receptor in this immune activity. Titration of this inhibition with varying amounts of complexes revealed distinct plateaus in the dose-response curve. This suggested that there may be more than one kind of receptor and/or different populations of lymphocytes which bear the receptor.
已证明复合免疫球蛋白的淋巴细胞受体不与热聚集的人血清白蛋白、牛血清白蛋白、转铁蛋白、F(ab')(2)、还原和烷基化的免疫球蛋白以及轻度氧化的免疫球蛋白结合,这表明该受体对复合免疫球蛋白Fc部分上依赖二硫键的位点具有特异性。抑制实验提供了证据,表明同一受体既能结合热聚集的免疫球蛋白,也能结合抗原-抗体复合物。用链霉蛋白酶处理的淋巴细胞不再能够结合免疫球蛋白复合物,这表明该受体是一种蛋白质或糖蛋白。还获得了其他证据,表明淋巴细胞表面免疫球蛋白和复合免疫球蛋白的受体是不同的,因为前者可以被帽化而不影响后者的分布,并且在淋巴细胞经胰蛋白酶消化后无法检测到表面免疫球蛋白,而免疫球蛋白复合物的结合不受这种处理的影响。在37℃的组织培养基中孵育已结合免疫球蛋白复合物的淋巴细胞,结果显示复合物在表面膜上保留了几个小时,并且只有少数结合复合物的淋巴细胞出现帽形成。热聚集的IgG特异性结合其复合免疫球蛋白受体的淋巴细胞在介导抗体依赖性细胞毒性的能力上受到明显抑制,从而为该受体在这种免疫活性中的必要性提供了有力证据。用不同量的复合物滴定这种抑制作用,在剂量-反应曲线中显示出明显的平台期。这表明可能存在不止一种受体和/或携带该受体的不同淋巴细胞群体。