Dayal R, Hurlimann J, Suard Y M, Kraehenbuhl J P
Biochem J. 1982 Jan 1;201(1):71-9. doi: 10.1042/bj2010071.
Caseins were separated from whey proteins by acid precipitation of skimmed rabbit milk. Whole casein was resolved by sodium dodecyl sulphate/polyacrylamide-gel electrophoresis into three major bands with apparent relative molecular masses (Mr of 31 000, 29 000 and 25 000. On agarose/urea-gel electrophoresis whole casein gave three bands with electrophoretic mobilities alpha, beta and gamma. The three components were purified by DEAE-cellulose chromatography under denaturing and reducing conditions. Each was shown to have a different amino acid, hexose and phosphorus content, as well as non-identical peptide fragments after proteinase digestion. The 31 000 Da (dalton) protein, of alpha-electrophoretic mobility, had a high phosphorus content (4.38%, w/w); the 29 000 Da peptide, of gamma-mobility, had the highest hexose content (2.2%, w/w), contained 0.8 cysteine residue per 100 amino acid residues and was susceptible to chymosin digestion corresponding thus to kappa-casein; the 25 000 Da protein migrated to the beta-position. The rabbit casein complex is composed of at least three caseins, two of which (alpha- and kappa-caseins) are analogous to the caseins from ruminants. Although caseins are poor immunogens, specific antibodies were raised against total and purified polypeptides. The antiserum directed against whole casein recognized each polypeptide, each casein corresponding to a distinct precipitation line. The antisera directed against each casein polypeptide reacted exclusively with the corresponding casein and no antiserum cross-reaction occurred between the three polypeptides. From whey, several proteins were isolated, characterized and used as antigens to raise specific antibodies. An iron-binding protein with an apparent Mr of 80 000 was shown to be immunologically and structurally identical with serum transferrin.
通过对脱脂兔乳进行酸沉淀,将酪蛋白与乳清蛋白分离。全酪蛋白经十二烷基硫酸钠/聚丙烯酰胺凝胶电泳分离为三条主要条带,其表观相对分子质量(Mr)分别为31000、29000和25000。在琼脂糖/尿素凝胶电泳中,全酪蛋白产生了具有α、β和γ电泳迁移率的三条条带。在变性和还原条件下,通过DEAE-纤维素色谱法对这三种成分进行了纯化。结果表明,每种成分具有不同的氨基酸、己糖和磷含量,并且在蛋白酶消化后具有不同的肽片段。电泳迁移率为α的31000道尔顿(Da)蛋白质具有较高的磷含量(4.38%,w/w);电泳迁移率为γ的29000 Da肽具有最高的己糖含量(2.2%,w/w),每100个氨基酸残基含有0.8个半胱氨酸残基,并且易受凝乳酶消化,因此对应于κ-酪蛋白;25000 Da蛋白质迁移至β位置。兔酪蛋白复合物至少由三种酪蛋白组成,其中两种(α-和κ-酪蛋白)类似于反刍动物的酪蛋白。尽管酪蛋白是弱免疫原,但仍针对总多肽和纯化多肽产生了特异性抗体。针对全酪蛋白的抗血清识别每种多肽,每种酪蛋白对应一条独特的沉淀线。针对每种酪蛋白多肽的抗血清仅与相应的酪蛋白发生反应,三种多肽之间未发生抗血清交叉反应。从乳清中分离、鉴定了几种蛋白质,并将其用作抗原以产生特异性抗体。一种表观Mr为80000的铁结合蛋白在免疫学和结构上与血清转铁蛋白相同。