首页> 外文期刊>The biochemical journal >Domain-specificity of Cd2+ and Zn2+ binding to rabbit liver metallothionein 2. Metal ion mobility in the formation of Cd4-metallothionein α-fragment
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Domain-specificity of Cd2+ and Zn2+ binding to rabbit liver metallothionein 2. Metal ion mobility in the formation of Cd4-metallothionein α-fragment

机译:Cd2 +和Zn2 +与兔肝金属硫蛋白2结合的结构域特异性。Cd4-金属硫蛋白α片段形成中的金属离子迁移率。

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pThe yield of the alpha-fragment of rabbit liver metallothionein 2 was used to test the domain-specificity and mobility of Cd2+ and Zn2+ when bound to metallothionein. Increasing molar ratios of Cd2+ were added to either Zn7-metallothionein or the metal-ion-free apo-metallothionein. The enzyme subtilisin was used to digest those parts of the peptide chain that were not bound to Cd2+. Analysis of the digestion products was carried out by separation by polyacrylamide-gel electrophoresis. The chelation agent EDTA was used as a competitive chelator. It was found that the presence of excess EDTA greatly enhances the formation of the Cd4-metallothionein alpha-fragment, and catalyses the complete digestion of all other the metal-ion-containing peptides, so that even Cd7-metallothionein, formed when 7 molar equivalents of Cd2+ are added to Zn7-metallothionein, is digested to the alpha-fragment. These results suggest that the Cd2+ bound in the beta-sites is very labile, much more labile than the kinetics of the off-reaction would suggest. The observation of significant amounts of alpha-fragment on the gels, even when the stoichiometry of the metal ions initially present in the protein should not have resulted in much concentration of Cd4-alpha-fragment clusters, indicates that as the digestion proceeds the metal ions move to sites that form complete clusters and therefore selectively protect that part of the peptide chain from digestion. We also find that rabbit Cd4-metallothionein 2 alpha-fragment stains near to the top of the gel, in complete contrast with the location of rat Cd4-metallothionein 2 alpha-fragment. This difference in the mobilities suggests that the alpha-fragment prepared from rabbit metallothionein 2 is much less negatively charged than the analogous protein fragment prepared from rat liver metallothionein 2./p
机译:>兔肝金属硫蛋白2的α片段的产量用于测试与金属硫蛋白结合时Cd2 +和Zn2 +的结构域特异性和迁移率。将Cd2 +的摩尔比增加到Zn7-金属硫蛋白或无金属离子的载金属硫蛋白中。枯草杆菌蛋白酶被用来消化未与Cd2 +结合的肽链部分。消化产物的分析通过聚丙烯酰胺-凝胶电泳分离进行。螯合剂EDTA被用作竞争性螯合剂。发现过量的EDTA的存在极大地促进了Cd4-金属硫蛋白α-片段的形成,并催化了所有其他含金属离子的肽的完全消化,从而即使当Cd7-金属硫蛋白在7摩尔当量时也形成了。的Cd2 +加入到Zn7-金属硫蛋白中,被消化成α片段。这些结果表明,结合在β位的Cd2 +非常不稳定,比副反应的动力学更不稳定。即使在最初存在于蛋白质中的金属离子的化学计量不应该导致Cd4-α片段簇的浓度很高的情况下,在凝胶上观察到大量的α片段也表明,随着消化的进行,金属离子移至形成完整簇的位点,因此有选择地保护肽链的这一部分不被消化。我们还发现靠近凝胶顶部的兔Cd4-金属硫蛋白2α-片段染色与大鼠Cd4-金属硫蛋白2α-片段的位置完全相反。迁移率的这种差异表明,由兔金属硫蛋白2制备的α片段带负电荷的比例远低于由大鼠肝金属硫蛋白2制备的类似蛋白片段。

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