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核糖核酸酶T1的结构与功能。二十一。用碘乙酰胺修饰核糖核酸酶T1中的组氨酸残基。

The structure and function of ribonuclease T1. XXI. Modification of histidine residues in ribonuclease T1 with iodoacetamide.

作者信息

Takahashi K

出版信息

J Biochem. 1976 Dec;80(6):1267-75. doi: 10.1093/oxfordjournals.jbchem.a131398.

Abstract
  1. When ribonuclease T1 [EC 3.1.4.8] (0.125% solution) was treated with a 760-fold molar excess of iodoacetamide at pH 8.0 and 37 degrees, about 90% of the original activity was lost in 24 hr. The half-life of the activity was about 8 hr. The binding ability for 3'-GMP was lost simultaneously. Changes were detected only in histidine and the amino-terminal alanine residues upon amino acid analyses of the inactivated protein and its chymotryptic peptides. The inactivation occurred almost in parallel with the loss of two histidine residues in the enzyme. The pH dependences of the rate of inactivation and that of loss of histidine residues were similar and indicated the implication of a histidine residue or residues with pKa 7.5 to 8 in this reaction. 3'-GMP and guanosine showed some protective effect against loss of activity and of histidine residues. The reactivity of histidine residues was also reduced by prior modification of glutamic acid-58 with iodoacetate, of lysine-41 with maleic or cis-aconitic anhydride or 2,4,6-trinitrobenzenesulfonate or of arginine-77 with ninhydrin. 2. Analyses of the chymotryptic peptides from oxidized samples of the iodoacetamide-inactivated enzyme showed that histidine-92 and histidine-40 reacted with iodoacetamide most rapidly and at similar rates, whereas histidine-27 was least reactive. Alkylation of histidine-92 was markedly slowed down when the Glu58-carboxymethylated enzyme was treated with iodoacetamide. On the other hand, alkylation of histidine-40 was slowed down most in the presence of 3'-GMP. These results suggest that histidine-92 and histidine-40 are involved in the catalytic action, probably forming part of the catalytic site and part of the binding site, respectively, and that histidine-27 is partially buried in the enzyme molecule or interacts strongly with some other residue, thus becoming relatively unreactive.
摘要
  1. 当核糖核酸酶T1EC 3.1.4.8在pH 8.0和37℃下用碘乙酰胺的760倍摩尔过量物处理时,约90%的原始活性在24小时内丧失。活性的半衰期约为8小时。对3'-GMP的结合能力同时丧失。对失活蛋白及其胰凝乳蛋白酶消化肽进行氨基酸分析时,仅在组氨酸和氨基末端丙氨酸残基上检测到变化。失活几乎与酶中两个组氨酸残基的丧失同时发生。失活速率和组氨酸残基丧失速率的pH依赖性相似,表明在此反应中有一个或多个pKa为7.5至8的组氨酸残基参与。3'-GMP和鸟苷对活性丧失和组氨酸残基丧失有一定的保护作用。用碘乙酸对谷氨酸-58进行预先修饰、用马来酸酐或顺乌头酸酐或2,4,6-三硝基苯磺酸对赖氨酸-41进行预先修饰或用茚三酮对精氨酸-77进行预先修饰,也会降低组氨酸残基的反应性。2. 对碘乙酰胺失活酶的氧化样品的胰凝乳蛋白酶消化肽进行分析表明,组氨酸-92和组氨酸-40与碘乙酰胺反应最迅速且速率相似,而组氨酸-27反应性最低。当用碘乙酰胺处理Glu58-羧甲基化酶时,组氨酸-92的烷基化明显减慢。另一方面,在3'-GMP存在下,组氨酸-40的烷基化减慢最多。这些结果表明组氨酸-92和组氨酸-40参与催化作用,可能分别构成催化位点的一部分和结合位点的一部分,并且组氨酸-27部分埋藏在酶分子中或与其他一些残基强烈相互作用,从而变得相对无反应性。

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