微管蛋白-秋水仙碱复合物解离动力学。完整的反应方案和与热力学测量的比较。

IF 0.1 4区 社会学 0 HUMANITIES, MULTIDISCIPLINARY REVISTA DE OCCIDENTE Pub Date : 1990-06-01 DOI:10.13039/501100008737
Jesús Balsinde, F. Mollinedo
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引用次数: 463

摘要

使用[3H]秋水仙碱和荧光测量,在纯化小牛脑微管蛋白和微管蛋白制备中表征了微管蛋白-秋水仙碱复合物的缓慢解离反应。在这些测量的精度范围内,它适合于单个指数相位。解离是一个动力学上不利的反应,活化能分别为114 +/- 10和94 +/- 10 kJ mol-1(纯化的微管蛋白和微管蛋白)。先前提出的微管蛋白-秋水仙碱结合的动力学方案(Lambeir, A., and Engelborghs, Y.(1981)。化学,256,3279-3282)为:T + C K1平衡TC k2平衡k-2 (TC)',其中步骤1是快速可逆结合,步骤2是缓慢构象变化,其逆向速率常数(k-2)在关联研究中被忽略。该动力学方案现已完成,包括限速解离步骤(k-2)和纯化小牛脑微管蛋白制备的测量。从动力学测量中计算出的总体结合标准自由能变化为-42.0 +/- 0.1 kJ mol-1(在10 mM磷酸钠缓冲液中,0.1 mM GTP, pH 7.0, 37℃下的结合快速相)。结合是放热的,计算出的焓变为-26 +/- 13 kJ mol-1,这与最近确定的热焓值-21 +/- 2 kJ mol-1相吻合(Menendez, M., Laynez, J., Medrano, F. J., and Andreu, J. M. (1989) J. Biol。化学,264,16367-16371),表明动力学方案和测量基本上是正确的。
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Kinetics of dissociation of the tubulin-colchicine complex. Complete reaction scheme and comparison to thermodynamic measurements.
The slow dissociation reaction of the tubulin-colchicine complex has been characterized in purified calf brain tubulin and microtubule protein preparations, using [3H]colchicine and fluorometric measurements. It fits to a single exponential phase, within the accuracy of these measurements. The dissociation is a kinetically unfavorable reaction, with activation energy values of 114 +/- 10 and 94 +/- 10 kJ mol-1 (purified tubulin and microtubule protein, respectively). The kinetic scheme previously proposed for the tubulin-colchicine association (Lambeir, A., and Engelborghs, Y. (1981) J. Biol. Chem. 256, 3279-3282) is: T + C K1 in equilibrium TC k2 in equilibrium k-2 (TC)' where step 1 is a fast reversible binding and step 2 is a slow conformational change, whose backward rate constant (k-2) was neglected for the association study. This kinetic scheme has now been completed to include the measurements of the rate-limiting dissociation step (k-2), and of the purified calf brain tubulin preparation. The overall binding standard free energy change, calculated from the kinetic measurements, is -42.0 +/- 0.1 kJ mol-1 (fast phase of binding in 10 mM sodium phosphate buffer, 0.1 mM GTP, pH 7.0, at 37 degrees C). The binding is exothermic and the calculated enthalpy change is -26 +/- 13 kJ mol-1, which coincides with the recently determined calorimetric enthalpy value, -21 +/- 2 kJ mol-1 (Menendez, M., Laynez, J., Medrano, F. J., and Andreu, J. M. (1989) J. Biol. Chem. 264, 16367-16371), suggesting that the kinetic scheme and measurements are essentially correct.
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REVISTA DE OCCIDENTE
REVISTA DE OCCIDENTE HUMANITIES, MULTIDISCIPLINARY-
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