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一种昆虫谷胱甘肽S-转移酶的机制:支持家蝇I1亚型快速平衡随机序列机制的动力学分析

Mechanism of an insect glutathione S-transferase: kinetic analysis supporting a rapid equilibrium random sequential mechanism with housefly I1 isoform.

作者信息

Nay B, Fournier D, Baudras A, Baudras B

机构信息

Laboratoire d'Entomologie Appliquée, Université Paul Sabatier, Toulouse, France.

出版信息

Insect Biochem Mol Biol. 1999 Jan;29(1):71-9. doi: 10.1016/s0965-1748(98)00106-4.

Abstract

The steady-state kinetics of glutathione S-transferase I1 (GST I1) from housefly Musca domestica expressed in Escherichia coli were investigated with glutathione (GSH) and 1-chloro-2,4-dinitrobenzene (CDNB). Concentrations of the varied substrates were from 0.03 to 1 mM for GSH and 0.05 to 1 mM for CDNB. Within this range, Michaelis-Menten behaviour was observed and convergent straight lines in double reciprocal plots excluded a ping-pong kinetic mechanism. Instead, data were consistent either with rapid-equilibrium random or with steady-state ordered sequential mechanisms because of abscissa convergence. Discrimination was achieved by studying the reaction with another electrophilic partner, p-nitrophenyl-acetate (PNPA). Concentrations of PNPA and GSH varied within the ranges 0.5 to 10 mM and 0.03 to 0.6 mM, respectively. The complete set of data supports the proposal of a rapid-equilibrium random-sequential model with strictly independent sites for GSH and CDNB or PNPA. Kinetic parameters are thus true dissociation equilibrium constants with values of 0.15 mM for GSH, 0.15 mM for CDNB, and 7 mM for PNPA. Analysis of the inhibition by the product (S-(2,4-dinitrophenyl)-glutathione, 10 to 100 microM), on the coupling reaction between GSH and CDNB with either GSH (0.05 to 0.5 mM, CDNB 0.2 mM) or CDNB (0.05 to 0.5 mM, GSH 0.2 mM) varied, consistent with the proposed mechanism. Binding of product to the free enzyme excludes GSH (competitive inhibition pattern with Kp = 12 microM) but only slightly hinders binding of CDNB. Binding free energies, together with the inhibition pattern, suggest that the non-peptidic moiety of product interacts with an alternative sub-site within the large open pocket accommodating the various electrophilic substrates. These results lead us to propose a model for intra-pocket shifting of the non-peptidic moiety upon product formation which contributes to the product release.

摘要

利用谷胱甘肽(GSH)和1-氯-2,4-二硝基苯(CDNB)研究了在大肠杆菌中表达的家蝇谷胱甘肽S-转移酶I1(GST I1)的稳态动力学。GSH的各种底物浓度为0.03至1 mM,CDNB为0.05至1 mM。在此范围内,观察到米氏行为,双倒数图中的收敛直线排除了乒乓动力学机制。相反,由于横坐标收敛,数据与快速平衡随机或稳态有序顺序机制一致。通过研究与另一种亲电伙伴对硝基苯乙酸(PNPA)的反应进行区分。PNPA和GSH的浓度分别在0.5至10 mM和0.03至0.6 mM范围内变化。完整的数据集支持了一个快速平衡随机顺序模型的提议,该模型中GSH、CDNB或PNPA具有严格独立的位点。因此,动力学参数是真正的解离平衡常数,GSH的值为0.15 mM,CDNB为0.15 mM,PNPA为7 mM。分析产物(S-(2,4-二硝基苯基)-谷胱甘肽,10至100 microM)对GSH和CDNB之间偶联反应的抑制作用,其中GSH(0.05至0.5 mM,CDNB 0.2 mM)或CDNB(0.05至0.5 mM,GSH 0.2 mM)有所变化,这与所提出的机制一致。产物与游离酶的结合排除了GSH(竞争性抑制模式,Kp = 12 microM),但仅略微阻碍CDNB的结合。结合自由能以及抑制模式表明,产物的非肽部分与容纳各种亲电底物的大开放口袋内的另一个亚位点相互作用。这些结果使我们提出了一个产物形成时非肽部分在口袋内移动的模型,这有助于产物释放。

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