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分子内亲核催化的作用以及自缔合对低pH值下人胰岛素脱酰胺作用的影响。

The role of intramolecular nucleophilic catalysis and the effects of self-association on the deamidation of human insulin at low pH.

作者信息

Darrington R T, Anderson B D

机构信息

Glaxo Inc., Research Triangle Park, North Carolina 27709.

出版信息

Pharm Res. 1994 Jun;11(6):784-93. doi: 10.1023/a:1018909220255.

Abstract

The influence of intramolecular catalysis and self-association on the kinetics of deamidation at the A-21 Asn residue of human insulin was explored at low pH and 35 degrees C. Observed rate constants of overall insulin degradation were determined as a function of pH over a pH range of 2.0-5.0 and as a function of total insulin concentration between pH 2.0-4.0. The pH-rate behavior of both monomeric and associated insulin degradation from pH 2.0 to 5.0 indicated intramolecular catalysis by the unionized carboxyl terminus of the A chain. Anhydride trapping with aniline at pH 3.0 provided evidence supporting the formation of a cyclic anhydride intermediate in the rate limiting step indicative of intramolecular nucleophilic catalysis. Insulin in the presence of aniline at low pH formed two anilide products, A-21 N delta 2-phenyl asparagine and N delta 2-phenyl aspartic acid human insulin, at the expense of desamido A-21 formation, consistent with the partitioning of a common intermediate. Self-associated insulin degraded at a rate approximately 2.5 times greater than that of the monomer at pH 2.0 and pH 3. However, self-association had a negligible or slight stabilizing effect on insulin decomposition at pH 4.0. An apparent downward shift in the pKa of the carboxyl terminus of approximately 0.75 units upon self-association and a catalytic rate constant which increases with -COOH acidity are proposed to account for these observations.

摘要

在低pH值和35℃条件下,研究了分子内催化和自缔合对人胰岛素A-21天冬酰胺残基脱酰胺动力学的影响。测定了在2.0 - 5.0的pH范围内整体胰岛素降解的观测速率常数与pH的函数关系,以及在pH 2.0 - 4.0之间整体胰岛素降解的观测速率常数与总胰岛素浓度的函数关系。从pH 2.0到5.0,单体和缔合胰岛素降解的pH - 速率行为表明,A链未电离的羧基末端存在分子内催化作用。在pH 3.0时用苯胺捕获酸酐,为限速步骤中形成环状酸酐中间体提供了证据,这表明存在分子内亲核催化作用。在低pH值下存在苯胺时,胰岛素形成了两种苯胺产物,即A-21 Nδ2 - 苯天冬酰胺和Nδ2 - 苯天冬氨酸人胰岛素,同时消耗了脱酰胺A-21的形成,这与一个共同中间体的分配情况一致。在pH 2.0和pH 3.0时,自缔合胰岛素的降解速率比单体快约2.5倍。然而,在pH 4.0时,自缔合对胰岛素分解的影响可忽略不计或具有轻微的稳定作用。有人提出,自缔合后羧基末端的pKa明显下降约0.75个单位,以及催化速率常数随 - COOH酸度增加,来解释这些观察结果。

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