Isolation of human erythrocyte membranes and their outer surface proteins by covalent fractionation on solid support.
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Biomedical subjects
Publications and source records attributed to Y Eshdat.
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Spectrin, isolated from human erythrocyte membrane, was specifically cleaved at the amino side of its cysteine residues by reacting it with 2-nitro-5-thiocyanobenzoic acid at pH 8.0 and incubating the product at pH 9.0. Conditions were developed to obtain quantitative cleavage, with virtually no side reactions due to exposure to the alkaline pH. The solubility and aggregation state of the spectrin fragments in 0.2 M sodium chloride, in 7 M guanidine hydrochloride or in 10 M urea, at pH 8.0, allow separation and partial purification of the fragments by gel filtration or by ion-exchange chromatography. Our results strongly suggest that various parts of the spectrin molecules have similar amino acid compositions. Due to the relatively limited number of fragments, this cleavage method is a promising tool for further elucidation of the structure of spectrin and for understanding its role in the erythrocyte membrane.
The human erythrocyte structural protein spectrin and its subunits I, II were isolated in the presence of Na-dodecyl-sulfate by gel filtration and preparative gel electrophoresis. After removal of the detergent, spectrin alpha-helical content is comparable to spectrin isolated without detergent. Subunits I and II formed single bands in isoelectric focusing (pI = 5.6) and in Ornstein-Davis disc gel electrophoresis systems, indicating the individual subunits are homogenous in nature. The molecular weights of the subunits I and II, determined by Ferguson plot, are 237,500 and 238,600, respectively, which is in good agreement with values obtained by the standard SDS gel relative mobility method. Limited tryptic digestion of spectrin and two-dimensional peptide maps of the individual subunits cleaved by S-cyanylation reaction showed dissimilar patterns, suggesting differences in primary structure between the two subunits.
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A membrane-associated glycoprotein fraction, referred to a CEA-M was isolated from human colonic tumor tissue by sodium dodecyl sulfate extraction of membrane fragments followed by wheat germ agglutinin affinity chromatography, Bio-Gel A-1.5 gel filtration and preparative slab gel electrophoresis. With a m.w. of approximately 200,000, isoelectric point of about 4.2 and carbohydrate:protein ratio of 2:1, this glycoprotein has physiocochemical and antigenic similarities to carcinoembryonic antigen, CEA. Immunochemical studies have shown that antiserum developed for this glycoprotein possesses relative specificity for human colonic carcinomas. Chemical cleavage of this glycoprotein by 2-nitro-5-thiocyanobenzoic acid resulted in three major Coomassie Blue and two periodic acid Schiff stainable fragments (one of which stains with both). It was found that one of the glycopeptides, labeled as TA, isolated by affinity and covalent chromatography, contained 77% carbohydrates and possessed antigenic determinants recognized by at least 70% of the antibody population raised against the total glycoprotein fraction; purified antibodies to this region of the molecule seem promising for the development of a specific assay for gastrointestinal tumors.