Saboori A M, Smith B L, Agre P
Department of Medicine, Johns Hopkins University School of Medicine, Baltimore, MD 21205.
Proc Natl Acad Sci U S A. 1988 Jun;85(11):4042-5. doi: 10.1073/pnas.85.11.4042.
A Mr 32,000 integral membrane protein has previously been identified on erythrocytes bearing the Rh(D) antigen and is thought to contain the antigenic variations responsible for the different Rh phenotypes. To study it on a biochemical level, a simple large-scale method was developed to purify the Mr 32,000 Rh protein from multiple units of Rh(D)-positive and -negative blood. Erythrocyte membrane vesicles were solubilized in NaDodSO4, and a tracer of immunoprecipitated 125I surface-labeled Rh protein was added. The Rh protein was purified to homogeneity by hydroxylapatite chromatography followed by preparative NaDodSO4/PAGE. Approximately 25 nmol of pure Rh protein was recovered from each unit of Rh(D)-positive and -negative blood. Rh protein purified from both Rh phenotypes appeared similar by one-dimensional NaDodSO4/PAGE, and the N-terminal amino acid sequences for the first 20 residues were identical. Rh proteins purified from Rh(D)-positive and -negative blood were compared by two-dimensional iodopeptide mapping after 125I-labeling and alpha-chymotrypsin digestion. The peptide maps were very similar; however, at least two additional iodopeptides were consistently noted in the Rh proteins purified from Rh(D)-positive erythrocytes. These data indicate that a similar core Rh protein (or group of related proteins) exists in both Rh(D)-positive and -negative erythrocytes, and the Rh proteins from erythrocytes with different Rh phenotypes contain distinct structural polymorphisms.
一种分子量为32,000的整合膜蛋白先前已在带有Rh(D)抗原的红细胞上被鉴定出来,并且被认为含有导致不同Rh表型的抗原变异。为了在生化水平上对其进行研究,开发了一种简单的大规模方法,从多个单位的Rh(D)阳性和阴性血液中纯化分子量为32,000的Rh蛋白。红细胞膜囊泡在十二烷基硫酸钠(NaDodSO4)中溶解,并加入免疫沉淀的125I表面标记Rh蛋白的示踪剂。通过羟基磷灰石层析,然后进行制备性十二烷基硫酸钠/聚丙烯酰胺凝胶电泳(NaDodSO4/PAGE),将Rh蛋白纯化至同质。从每个单位的Rh(D)阳性和阴性血液中回收了约25 nmol的纯Rh蛋白。通过一维NaDodSO4/PAGE分析,从两种Rh表型中纯化的Rh蛋白看起来相似,并且前20个残基的N端氨基酸序列相同。在125I标记和α-胰凝乳蛋白酶消化后,通过二维碘肽图谱对从Rh(D)阳性和阴性血液中纯化的Rh蛋白进行比较。肽图谱非常相似;然而,在从Rh(D)阳性红细胞中纯化的Rh蛋白中始终至少观察到另外两种碘肽。这些数据表明,在Rh(D)阳性和阴性红细胞中存在相似的核心Rh蛋白(或一组相关蛋白),并且来自具有不同Rh表型的红细胞的Rh蛋白含有不同的结构多态性。