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豚鼠肝脏转谷氨酰胺酶的扩展活性位点。

The extended active site of guinea pig liver transglutaminase.

作者信息

Gross M, Whetzel N K, Folk J E

出版信息

J Biol Chem. 1975 Jun 25;250(12):4648-55.

PMID:237906
Abstract

The catalytic activities of guinea pig liver transglutaminase toward glutamine-containing peptide derivatives of three series have been studied. These series include: (a) formylheptapeptides of the basic structure, HCO-GLY3-L-Gln-Gly3. A single L-leucine residue was systematically substituted for glycine at a different position in each peptide; (b) formyltripeptides of the basic structure, HCO-Gly-L-Gln-Gly. L-Leucine was substituted for glycine in each position and in both positions; (c) various N-acyl derivatives of the dipeptide, L-Gln-Gly. Comparison of the values of the kinetic constants for methylamine incorporation and for hydroxylamine incorporation with the peptide derivatives shows that the length of the peptide chain has a pronounced influence on catalysis, as does the position of the leucine residue in the longer chain peptide derivatives. The kcat/Km(app) values for each substrate calculated from data for methylamine incorporation and from those for hydroxylamine incorporation were found to be in good agreement. However, both the observed maximum velocity and the apparent Michaelis constant for each peptide derivative were significantly larger for hydroxylamine incorporation than for methylamine incorporation. Interpretation of these findings as evidence for a normal catalytic mechanism for each amine incorporation reaction and for the limiting nature of deacylation to methylamine is discussed. Two observations caution against such an interpretation. These are the significantly higher inhibitor constants found fo formylhexaglycine and for several other competitive inhibitors in the hydroxylamine incorporation reaction, and earlier findings of higher turnover values with hyroxylamine in cases were acylation appears to be limiting for methylamine incorporation. Methods of preparation, supporting analytical data and properties of the peptide intermediates, the peptides, and their derivatives used in this study are presented in the miniprint supplement immediately following this paper.

摘要

已对豚鼠肝脏转谷氨酰胺酶对三个系列含谷氨酰胺肽衍生物的催化活性进行了研究。这些系列包括:(a) 基本结构为HCO-GLY3-L-Gln-Gly3的甲酰化七肽。在每个肽的不同位置系统地用单个L-亮氨酸残基取代甘氨酸;(b) 基本结构为HCO-Gly-L-Gln-Gly的甲酰化三肽。在每个位置以及两个位置用L-亮氨酸取代甘氨酸;(c) 二肽L-Gln-Gly的各种N-酰基衍生物。将甲胺掺入和羟胺掺入肽衍生物的动力学常数的值进行比较表明,肽链的长度对催化有显著影响,较长链肽衍生物中亮氨酸残基的位置也是如此。根据甲胺掺入数据和羟胺掺入数据计算的每种底物的kcat/Km(app)值发现吻合良好。然而,对于羟胺掺入,每种肽衍生物观察到的最大速度和表观米氏常数均明显大于甲胺掺入。讨论了将这些发现解释为每种胺掺入反应正常催化机制以及脱酰作用对甲胺的限制性质的证据。有两点观察结果提醒不要进行这样的解释。这两点是在羟胺掺入反应中发现甲酰化六甘氨酸和其他几种竞争性抑制剂的抑制剂常数明显更高,以及在甲胺掺入酰化似乎起限制作用的情况下早期发现羟胺具有更高的周转值。本文紧接着的缩印补编中介绍了本研究中使用的肽中间体、肽及其衍生物的制备方法、支持性分析数据和性质。

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