Hermand P, Mouro I, Huet M, Bloy C, Suyama K, Goldstein J, Cartron J P, Bailly P
INSERM U76, INTS, Paris, France.
Blood. 1993 Jul 15;82(2):669-76.
Rabbit polyclonal antibodies were raised against synthetic peptides corresponding to hydrophilic regions of the human Rhesus (Rh) IX cDNA-encoded polypeptide predicted to be extracellularly or intracellularly exposed in the topologic model of the Rh blood group protein. Four antibodies encompassing residues 33-45 (MPC1), 224-233 (MPC4), 390-404 (MPC6), and 408-416 (MPC8) were characterized and compared with a polyclonal anti-Rh protein obtained by immunization with purified Rh proteins. All antibodies had specificity for authentic Rh polypeptides and reacted on Western blot with Rh proteins immunoprecipitated with human monoclonal anti-RhD, -c, and -E. MPC1, but not the other antibodies, agglutinated all human erythrocytes except Rhnull and Rhmod cells, which either lack totally or are severely deficient in Rh proteins, respectively. Immunoblotting analysis with membrane proteins from common and rare variants showed that MPC1 and MPC8 reacted in Western blot with 32-Kd Rh polypeptides from all common red blood cells except those from Rhnull and Rhmod, indicating that peptide regions 33-45 and 408-416 may be common to several if not all Rh proteins, whatever the Rh blood group specificity. MPC4 reacted only with membrane preparations from cells carrying the E antigen, whereas MPC6 recognized preferentially the Rh proteins from E and Ee preparations, suggesting that the protein encoded by the RhIXb cDNA carries the E and/or e antigen(s). Immunoadsorption experiments using inside-out or right-side-out sealed vesicules from DccEE red blood cells as competing antigen showed that the MPC6 and MPC8 antibodies bound only to the cytoplasmic side of the erythrocyte membrane, thus providing evidence for the intracellular orientation of the C-terminal 27 residues of the Rh polypeptides. Attempts to transiently or stably express the Rh polypeptides. Attempts to transiently or stably express the Rh cDNA in eukaryotic cells were largely unsuccessful, suggesting that Rh antigen expression at the cell surface requires correct transport and/or folding of the Rh proteins, possibly as a complex with one-membrane proteins of the Rh cluster that are lacking in Rhnull cells.
针对与人类恒河猴(Rh)IX cDNA编码的多肽的亲水区相对应的合成肽制备了兔多克隆抗体,该多肽在Rh血型蛋白的拓扑模型中预测为细胞外或细胞内暴露。对包含残基33 - 45(MPC1)、224 - 233(MPC4)、390 - 404(MPC6)和408 - 416(MPC8)的四种抗体进行了表征,并与通过用纯化的Rh蛋白免疫获得的多克隆抗Rh蛋白进行了比较。所有抗体对天然Rh多肽均具有特异性,并在蛋白质印迹中与用人单克隆抗RhD、-c和-E免疫沉淀的Rh蛋白发生反应。MPC1能凝集除Rhnull和Rhmod细胞外的所有人类红细胞,而其他抗体则不能,Rhnull和Rhmod细胞分别完全缺乏或严重缺乏Rh蛋白。对常见和罕见变体的膜蛋白进行免疫印迹分析表明,MPC1和MPC8在蛋白质印迹中与除Rhnull和Rhmod细胞外的所有常见红细胞的32-Kd Rh多肽发生反应,这表明肽段区域33 - 45和408 - 416可能是几种(如果不是所有)Rh蛋白共有的,无论Rh血型特异性如何。MPC4仅与携带E抗原的细胞的膜制剂发生反应,而MPC6优先识别来自E和Ee制剂的Rh蛋白,这表明RhIXb cDNA编码的蛋白携带E和/或e抗原。使用来自DccEE红细胞的内翻或外翻密封小泡作为竞争抗原的免疫吸附实验表明,MPC6和MPC8抗体仅与红细胞膜的细胞质侧结合,从而为Rh多肽C末端27个残基的细胞内定位提供了证据。尝试在真核细胞中瞬时或稳定表达Rh多肽。尝试在真核细胞中瞬时或稳定表达Rh cDNA大多未成功,这表明Rh抗原在细胞表面的表达需要Rh蛋白的正确转运和/或折叠,可能是与Rhnull细胞中缺乏的Rh簇的一种膜蛋白形成复合物。