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磷酸丙糖异构酶活性位点环的运动:热激活的T跳跃弛豫光谱法

Active site loop motion in triosephosphate isomerase: T-jump relaxation spectroscopy of thermal activation.

作者信息

Desamero Ruel, Rozovsky Sharon, Zhadin Nick, McDermott Ann, Callender Robert

机构信息

Department of Biochemistry, Albert Einstein College of Medicine, Bronx, New York 10461, USA.

出版信息

Biochemistry. 2003 Mar 18;42(10):2941-51. doi: 10.1021/bi026994i.

Abstract

As for many enzymes, the enzymatic pathway of triosephosphate isomerase (TIM) includes the partially rate determining motion of an active site loop (loop 6, residues 166-176), which must remain closed during chemistry but must open just before product release. The motion of this loop was monitored using laser induced temperature-jump relaxation spectroscopy at nanosecond to millisecond time resolution. Trp168 in the hinge of the mobile loop served as a fluorophore reporter in a mutant of the yeast enzyme. The opening rate was studied as a function of the concentration of glycerol 3-phosphate, a substrate surrogate. Monoexponential kinetics were observed; assuming a simple two-step ligand release mechanism involving an encounter complex intermediate, the time scales of loop opening and closing were derived. The opening rate of the loop at 25 degrees C was determined to be 2500 +/- 1000 s(-1), in remarkable agreement with solution and solid state NMR measurements. The closing rate at the same temperature was 46,700 +/- 1800 s(-1). The rates were also studied as a function of the sample temperature following the jump. Enthalpies of activation of the loop motion, DeltaH(close) and DeltaH(open), were estimated to be 13.8 and 14.1 kcal/mol, respectively. The enthalpy of dissociation estimated from the kinetic studies is in reasonable agreement with steady-state values. Moreover, the enthalpy was dissected, for the first time, into components associated with ion binding and with protein conformational change. The enthalpy of the release reaction appeared to have a substantial contribution from the dissociation of the ligand from the encounter complex, found to be endothermic at 6 kcal/mol. In contrast, the population ratio of the open to closed loop conformations is found to favor the closed conformation but to be substantially less temperature dependent than the release step. Preliminary data of other ligands show that G3P behavior resembles that of the substrate but differs from 2-phosphoglycolate, a tight binding inhibitor, and phosphate. This study represents one of the first detailed comparisons between NMR and fluorescence based probes of protein motion and results in good agreement between the methods. The data in aggregate support a model in which the rate of the loop opening for TIM is dependent on the ligand and results in opening rates in the presence of the product that are comparable to enzymatic throughput, kcat.

摘要

对于许多酶而言,磷酸丙糖异构酶(TIM)的酶促途径包括活性位点环(环6,残基166 - 176)的部分速率决定运动,该环在化学反应过程中必须保持闭合,但在产物释放前必须打开。利用激光诱导温度跃变弛豫光谱在纳秒至毫秒的时间分辨率下监测该环的运动。在酵母酶的一个突变体中,位于可移动环铰链处的色氨酸168用作荧光团报告分子。研究了环的打开速率与甘油3 - 磷酸(一种底物替代物)浓度的函数关系。观察到单指数动力学;假设涉及相遇复合物中间体的简单两步配体释放机制,推导了环打开和关闭的时间尺度。在25℃下,环的打开速率确定为2500±1000 s⁻¹,与溶液和固态核磁共振测量结果显著一致。在相同温度下,关闭速率为46700±1800 s⁻¹。还研究了速率随温度跃变后样品温度的函数关系。环运动的活化焓,ΔH(关闭)和ΔH(打开),分别估计为13.8和14.1 kcal/mol。从动力学研究估计的解离焓与稳态值合理一致。此外,首次将焓分解为与离子结合和蛋白质构象变化相关的组分。释放反应的焓似乎有很大一部分来自配体与相遇复合物的解离,发现其吸热为6 kcal/mol。相比之下,发现开环构象与闭环构象的种群比有利于闭环构象,但比释放步骤对温度的依赖性小得多。其他配体的初步数据表明,甘油3 - 磷酸的行为类似于底物,但不同于紧密结合抑制剂2 - 磷酸乙醇酸和磷酸盐。这项研究代表了基于核磁共振和荧光的蛋白质运动探针之间的首批详细比较之一,并且两种方法的结果吻合良好。总体数据支持一个模型,其中TIM环的打开速率取决于配体,并且在存在产物的情况下打开速率与酶促通量kcat相当。

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