Samarut C, Revillard J P
Eur J Immunol. 1980 May;10(5):352-8. doi: 10.1002/eji.1830100507.
Modulation of receptors for IgG (Fc gamma R) on human lymphocytes was induced by the interaction with erythrocyte-IgG antibody (EAG) complexes followed by incubation at 37 degrees C. The re-expression of Fc gamma R could be achieved by two independent processes. (a) Active synthesis, susceptible to inhibition by puromycin or cycloheximide was shown to peak 4 to 6 h after removal of EAG complexes; it required addition of at least 2% fetal calf serum. (b) Insertion of soluble Fc gamma R into the membrane of modulated lymphocytes was shown to occur within 20 min of contact between cells and Fc gamma R-containing supernatants; it was not altered by protein synthesis inhibitors. Fc gamma R-like material, spontaneously released by unstimulated peripheral blood lymphocytes or by polymorphonuclear cells, was taken up by modulated lymphocytes. This soluble material was fully absorbed on polymerized human IgG; it was non-dialyzable, thermolabile (56 degrees C, 30 min) and partially destroyed by freezing and thawing; it was recovered as two broad peaks from chromatography on polyacrylamide gel; it was shown to bind to both T and non-T Fc gamma R-bearing lymphocytes capable of forming EAG rosettes before modulation; and it could be inserted into allogeneic lymphocytes. These results remonstrate that the Fc gamma R structure bears two active sites, one binding to the Fc gamma and the other to the surface of EAG rosette-forming cells. Rapid release of soluble Fc gamma R from the cells and their possible insertion into the membrane may have important implications with respect to the biological functions associated with these receptors.
人淋巴细胞上IgG受体(FcγR)的调节是通过与红细胞-IgG抗体(EAG)复合物相互作用,然后在37℃孵育诱导产生的。FcγR的重新表达可通过两个独立的过程实现。(a)活性合成,易受嘌呤霉素或环己酰亚胺抑制,在去除EAG复合物后4至6小时达到峰值;这需要添加至少2%的胎牛血清。(b)可溶性FcγR插入受调节淋巴细胞的膜中,在细胞与含FcγR的上清液接触后20分钟内发生;它不受蛋白质合成抑制剂的影响。未刺激的外周血淋巴细胞或多形核细胞自发释放的FcγR样物质被受调节的淋巴细胞摄取。这种可溶性物质在聚合的人IgG上完全被吸收;它不可透析,热不稳定(56℃,30分钟),冻融会部分破坏;在聚丙烯酰胺凝胶色谱上可回收为两个宽峰;它被证明能与调节前能够形成EAG花环的T和非T FcγR阳性淋巴细胞结合;并且它可以插入同种异体淋巴细胞中。这些结果表明,FcγR结构有两个活性位点,一个与Fcγ结合,另一个与形成EAG花环的细胞表面结合。细胞中可溶性FcγR的快速释放及其可能插入膜中可能对与这些受体相关的生物学功能具有重要意义。