首页> 外文OA文献 >Carboxymethylation of methionine residues in bovine pituitary luteinizing hormone and its subunits. Effects on the binding activity with receptor sites and interactions between subunits.
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Carboxymethylation of methionine residues in bovine pituitary luteinizing hormone and its subunits. Effects on the binding activity with receptor sites and interactions between subunits.

机译:牛垂体促黄体生成激素及其亚基中蛋氨酸残基的羧甲基化。对具有受体位点的结合活性以及亚基之间相互作用的影响。

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摘要

The reaction of iodoacetic acid with bovine lutropin (luteinizing hormone) at pH 3.0 was specific for methionine residues; it was slow and reached its equilibrium after 12 h at 37 degrees C. The number of modified methionine residues increased proportionately with the amount of the alkylating reagent in the reaction mixture. In the presence of a 20-fold molar excess of iodoacetic acid with respect to methionine, essentially all methionine residues in both subunits of bovine lutropin were carboxymethylated. Studies of various recombinations of modified and native alpha and beta subunits showed that methionine residues in bovine lutropin were not essential for interactions between subunits. Various recombinants were characterized by polyacrylamide-gel electrophoresis and gel filtration of Sephadex G-100. Immunological cross-reactivity by radioimmunoassay of the recombinants of modified alpha and beta subunits was relatively similar to that of the native subunits. However, the biological activity measured by receptor-site binding of the recombinants of alpha and beta chains with a total of three alkylated methionine residues was less than 5% of the activity of native lutropin. It is noteworthy that recombinants of a modified subunit and a native counterpart subunit regenerated 20-30 % of biological activity. These findings suggested that at least 1-2 methionine residues in each subunit are involved in the hormone-receptor interaction for bovine lutropin.
机译:pH值为3.0时,碘乙酸与牛促性黄素(促黄体激素)的反应对蛋氨酸残基具有特异性。它缓慢并在37摄氏度下在12小时后达到平衡。修饰的蛋氨酸残基的数量与反应混合物中烷基化试剂的数量成比例地增加。在碘乙酸相对于蛋氨酸过量20倍摩尔的存在下,牛促肾上腺素的两个亚基中的基本上所有蛋氨酸残基都被羧甲基化。对修饰的和天然的α和β亚基进行各种重组的研究表明,牛促肾上腺素中的蛋氨酸残基对于亚基之间的相互作用不是必需的。通过聚丙烯酰胺凝胶电泳和Sephadex G-100的凝胶过滤来表征各种重组体。通过放射免疫分析对修饰的α和β亚基的重组体的免疫学交叉反应性与天然亚基的相对相似。然而,通过α和β链的重组体与总共三个烷基化甲硫氨酸残基的受体-位点结合测量的生物活性小于天然促性黄素活性的5%。值得注意的是,修饰的亚基和天然对应亚基的重组体再生了20-30%的生物学活性。这些发现表明,每个亚基中至少有1-2个甲硫氨酸残基参与了牛促性腺激素的激素-受体相互作用。

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    Cheng, K W;

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  • 年度 1976
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