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α2-巨球蛋白分子的电泳“慢”型和“快”型

The electrophoretically 'slow' and 'fast' forms of the alpha 2-macroglobulin molecule.

作者信息

Barrett A J, Brown M A, Sayers C A

出版信息

Biochem J. 1979 Aug 1;181(2):401-18. doi: 10.1042/bj1810401.

Abstract

alpha 2-Macroglobulin (alpha 2M) was isolated from human plasma by a four-step procedure: poly(ethylene glyco) fractionation, gel chromatography, euglobulin precipitation and immunoadsorption. No contaminants were detected in the final preparations by electrophoresis or immunoprecipitation. The protein ran as a single slow band in gel electrophoresis, and was designated 'S-alpha 2M'. S-alpha 2M bound about 2 mol of trypsin/mol. Treatment of S-alpha 2M with a proteinase or ammonium salts produced a form of the molecule more mobile in electrophoresis, and lacking proteinase-binding activity (F-alpha 2M). The electrophoretic mobility of the F-alpha 2M resulting from reaction with NH4+ salts was identical with that of proteinase complexes. We attribute the change in electrophoretic mobility of the alpha 2M to a conformation change, but there was no evidence of a change in pI or Strokes radius. Electrophoresis of S-alpha 2M in the presence of sodium dodecylsulphate gave results consistent with the view that the alpha 2M molecule is a tetramer of identical subunits, assembled as a non-covalent pair of disulphide-linked dimers. Some of the subunits seemed to be 'nicked' into two-thires-length and one-third-length chains, however. This was not apparent with F-alpha 2M produced by ammonium salts. F-alpha 2M produced by trypsin showed two new bands attributable to cleavage of the subunit polypeptide chain near the middle. Immunoassays of F-alpha 2M gave 'rockets' 12-29% lower than those with S-alpha 2M. The nature of the interactions between subunits in S-alpha 2M and F-alpha 2M was investigated by treating each form with glutaraldehyde before electrophoresis in the presence of sodium dodecyl sulphate. A much greater degree of cross-linking was observed with the F-alpha 2M, indicating that the subunits interact most closely in this form of the molecule. Exposure of S-alpha 2M to 3 M-urea or pH3 resulted in dissociation to the disulphide-bonded half-molecules; these did not show the proteinase-binding activity characteristic of the intact alpha 2M. F-alpha 2M was less easily dissociated than was S-alpha 2M. S-alpha 2M was readily dissociated to the quarter-subunits by mild reduction, with the formation of 3-4 new thiol groups per subunit. Inact reactive alpha 2M could then be regenerated in high yield by reoxidation of the subunits. F-alpha 2M formed by reaction with a proteinase or ammonium salts was not dissociated under the same conditions, although the interchain disulphide bonds were reduced. If the thiol groups of the quarter-subunits of S-alpha 2M were blocked by carboxymethylation, oxidative reassociation did not occur. Nevertheless treatment of these subunits with methylammonium salts or a proteinase caused the reassembly of half-molecules and intact (F-) tetramers. It is emphasized that F-alpha 2M does not have the properties of a denatured form of the protein...

摘要

通过以下四步程序从人血浆中分离出α2-巨球蛋白(α2M):聚(乙二醇)分级分离、凝胶色谱、优球蛋白沉淀和免疫吸附。通过电泳或免疫沉淀在最终制剂中未检测到污染物。该蛋白在凝胶电泳中呈单一慢带,被命名为“S-α2M”。S-α2M每摩尔结合约2摩尔胰蛋白酶。用蛋白酶或铵盐处理S-α2M产生一种在电泳中迁移率更高且缺乏蛋白酶结合活性的分子形式(F-α2M)。与NH4 +盐反应产生的F-α2M的电泳迁移率与蛋白酶复合物的相同。我们将α2M电泳迁移率的变化归因于构象变化,但没有证据表明其pI或斯托克斯半径发生变化。在十二烷基硫酸钠存在下对S-α2M进行电泳得到的结果与α2M分子是相同亚基的四聚体的观点一致,该四聚体组装成非共价的二硫键连接的二聚体对。然而,一些亚基似乎被“切割”成三分之二长度和三分之一长度的链。由铵盐产生的F-α2M则不明显。由胰蛋白酶产生的F-α2M显示出两条新带,这归因于亚基多肽链在中间附近的切割。F-α2M的免疫测定得到的“火箭”比S-α2M的低12 - 29%。通过在十二烷基硫酸钠存在下电泳之前用戊二醛处理每种形式来研究S-α2M和F-α2M中亚基之间相互作用的性质。观察到F-α2M有更高程度的交联,表明亚基在这种分子形式中相互作用最紧密。将S-α2M暴露于3M尿素或pH3会导致解离为二硫键连接的半分子;这些半分子不显示完整α2M的蛋白酶结合活性特征。F-α2M比S-α2M更不易解离。通过温和还原,S-α2M很容易解离为四分之一亚基,每个亚基形成3 - 4个新的巯基。然后通过亚基的再氧化可以高产率地再生无活性的α2M。与蛋白酶或铵盐反应形成的F-α2M在相同条件下不会解离,尽管链间二硫键被还原。如果S-α2M的四分之一亚基的巯基被羧甲基化阻断,则不会发生氧化重聚。然而,用甲铵盐或蛋白酶处理这些亚基会导致半分子和完整(F -)四聚体的重新组装。需要强调的是,F-α2M不具有该蛋白质变性形式的性质...

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