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秋水仙碱的B环和C环改变对与微管蛋白的总体结合具有累积效应,但会改变每个动力学步骤。

Alterations of rings B and C of colchicine are cumulative in overall binding to tubulin but modify each kinetic step.

作者信息

Dumortier C, Gorbunoff M J, Andreu J M, Engelborghs Y

机构信息

Laboratory of Chemical and Biological Dynamics, Katholieke Universiteit Leuven, Belgium.

出版信息

Biochemistry. 1996 Dec 10;35(49):15900-6. doi: 10.1021/bi9614996.

Abstract

The role of the elimination of ring B and/or the modification of ring C of colchicine in tubulin binding kinetics and thermodynamics has been characterized, using four different molecules. These ligands are colchicine (COL); 2-methoxy-5-(2',3',4'-trimethoxyphenyl)-2,4,6-cycloheptatrien-1-on e (MTC), in which the central ring B has been reduced to one bond; allocolchicine (ALLO), in which ring C has been replaced by a six-membered ring; and 2,3,4-trimethoxy-4'-carbomethoxy-1,1'-biphenyl (TCB), where the same two modifications are made simultaneously. This paper describes the kinetics of association of ALLO with tubulin. The binding is accompanied by a fluorescence increase with slow biphasic kinetics, indicating binding to fast and slow tubulin isotypes. Binding to each of these isotypes occurs in two steps: a fast initial binding followed by a slower isomerization step. The K1 and k2 values for ALLO at 25 degrees C are 14,000 +/- 2,000 and 25,000 +/- 6,000 M-1 (fast and slow isotypes) and 0.055 +/- 0.003 s-1 and 0.013 +/- 0.001 s-1 (fast and slow isotype), respectively. For ALLO the reaction standard enthalpy change of the initial binding is 68 +/- 5 kJ.mol-1 (fast isotype) and 45 +/- 33 kJ.mol-1 (slow isotype) and the activation energy for the second forward step is 58 +/- 14 kJ.mol-1 (fast isotype) and 81 +/- 17 kJ.mol-1 (slow isotype). Displacement kinetics of bound ALLO by podophyllotoxin was monoexponential. The activation energy for the isomerization in the off direction is 107 +/- 7 kJ.mol-1. Comparison of the thermodynamic parameters for all four compounds shows that the modifications of both rings are cumulative with respect to overall binding. For the intermediate state there is a mutual influence of both modifications, suggesting an alteration of the reaction pathway.

摘要

利用四种不同的分子,已对秋水仙碱的B环消除和/或C环修饰在微管蛋白结合动力学和热力学中的作用进行了表征。这些配体包括:秋水仙碱(COL);2-甲氧基-5-(2',3',4'-三甲氧基苯基)-2,4,6-环庚三烯-1-酮(MTC),其中中心B环已减少为一个键;别秋水仙碱(ALLO),其中C环已被一个六元环取代;以及2,3,4-三甲氧基-4'-甲氧羰基-1,1'-联苯(TCB),其中同时进行了相同的两种修饰。本文描述了ALLO与微管蛋白结合的动力学。该结合伴随着荧光增强,具有缓慢的双相动力学,表明与快速和慢速微管蛋白亚型结合。与这些亚型中的每一种结合都分两步进行:快速的初始结合,随后是较慢的异构化步骤。25℃时ALLO的K1和k2值分别为14,000±2,000和25,000±6,000 M-1(快速和慢速亚型)以及0.055±0.003 s-1和0.013±0.001 s-1(快速和慢速亚型)。对于ALLO,初始结合的反应标准焓变为68±5 kJ·mol-1(快速亚型)和45±33 kJ·mol-1(慢速亚型),第二步正向反应的活化能为58±14 kJ·mol-1(快速亚型)和81±17 kJ·mol-1(慢速亚型)。鬼臼毒素对结合的ALLO的置换动力学是单指数的。在解离方向上异构化的活化能为107±7 kJ·mol-1。对所有四种化合物的热力学参数进行比较表明,两个环的修饰在总体结合方面是累积性的。对于中间状态,两种修饰存在相互影响,表明反应途径发生了改变。

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