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底物消耗分析作为一种研究来自牛胰腺的色氨酰 - tRNA合成酶形成氨酰腺苷酸的前稳态反协同动力学的方法。

Substrate depletion analysis as an approach to the pre-steady-state anticooperative kinetics of aminoacyl adenylate formation by tryptophanyl-tRNA synthetase from beef pancreas.

作者信息

Merle M, Graves P V, Labouesse B

出版信息

Biochemistry. 1984 Apr 10;23(8):1716-23. doi: 10.1021/bi00303a021.

Abstract

The formation of tryptophanyl adenylate catalyzed by tryptophanyl-tRNA synthetase from beef pancreas has been studied by stopped-flow analysis under conditions where the concentration of one of the substrates was largely decreasing during the time course of the reaction. Under such conditions a nonlinear regression analysis of the formation of the adenylate (adenylate vs. time curve) at several initial tryptophan and enzyme concentrations gave an accurate determination of both binding constants of this substrate. The use of the jackknife procedure according to Cornish - Bowden & Wong [ Cornish - Bowden , A., & Wong , J.J. (1978) Biochem. J. 175, 969-976] gave the limit of confidence of these constants. This approach confirmed that tryptophanyl-tRNA synthetase presents a kinetic anticooperativity toward tryptophan in the activation reaction that closely parallels the anticooperativity found for tryptophan binding at equilibrium. Both sites are simultaneously forming the adenylate. The dissociation constants obtained under the present pre-steady-state conditions for tryptophan are KT1 = 1.6 +/- 0.5 microM and KT2 = 18.5 +/- 3.0 microM at pH 8.0, 25 degrees C. The rate constant kf of adenylate formation is identical for both active sites (kf = 42 +/- 5 s-1). The substrate depletion method presently used, linked to the jackknife procedure, proves to be particularly suitable for the determination of the kinetic constants and for the discrimination between different possible kinetic models of dimeric enzyme with high substrate affinity. In such a case this method is more reliable than the conventional method using substrate concentrations in high excess over that of the enzyme.

摘要

利用停流分析法,在反应进程中一种底物浓度大幅下降的条件下,研究了来自牛胰腺的色氨酰 - tRNA合成酶催化色氨酰腺苷酸的形成。在这种条件下,对几种初始色氨酸和酶浓度下腺苷酸形成(腺苷酸与时间曲线)进行非线性回归分析,准确测定了该底物的两个结合常数。根据Cornish - Bowden和Wong [Cornish - Bowden, A., & Wong, J.J. (1978) Biochem. J. 175, 969 - 976]的方法,采用刀切法得出了这些常数的置信限。该方法证实,在激活反应中,色氨酰 - tRNA合成酶对色氨酸呈现动力学反协同性,这与在平衡时色氨酸结合的反协同性非常相似。两个位点同时形成腺苷酸。在当前的预稳态条件下,25℃、pH 8.0时,色氨酸的解离常数为KT1 = 1.6±0.5 microM和KT2 = 18.5±3.0 microM。两个活性位点的腺苷酸形成速率常数kf相同(kf = 42±5 s-1)。目前使用的与刀切法相关的底物消耗法,被证明特别适用于动力学常数的测定以及具有高底物亲和力的二聚体酶不同可能动力学模型的区分。在这种情况下,该方法比使用大大过量于酶浓度的底物浓度的传统方法更可靠。

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