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三价铬-三磷酸腺苷作为顺磁探针用于测定丙酮酸激酶上底物间的距离。活性酶-金属-ATP-金属复合物的检测。

Chromium(III)-adenosine triphosphate as a paramagnetic probe to determine intersubstrate distances on pyruvate kinase. Detection of an active enzyme-metal-ATP-metal complex.

作者信息

Gupta R K, Fung C H, Mildvan A S

出版信息

J Biol Chem. 1976 Apr 25;251(8):2421-30.

PMID:177415
Abstract

The interaction of CrATP, a stable, substitution-inert, paramagnetic tridentate complex of ATP, with muscle pyruvate kinase has been studied by measuring the effects of CrATP on the kinetics of pyruvate enolization and on the longitudinal nuclear magnetic relaxation rate (1/T1) of the protons of water and the protons and carbon atoms of pyruvate to investigate the existence and activity of bimetallic enzyme-M(II)-CrATP complexes and to determine intersubstrate distances on a kinase. The paramagnetic effect of CrATP on 1/T1 of water protons is enhanced upon complexation with the enzyme. Titrations of the enzyme with CrATP yielded characteristic enhancements of 1/T1 for the binary enzyme-CrATP, ternary enzyme-Mg(II)-crATP, and quaternary enzyme-Mg(II)-crATP-pyruvate complexes of 3.5, 1.7, and 1.2 and dissociation constants of CrATP of 400, 200, and 200 muM, respectively. From the frequency dependence of 1/T1, the number of fast exchanging water protons in the coordination spheres of Cr(III) is approximately 6 in CrATP and in both the ternary enzyme-Mg(II)-CrATP complex and the quaternary enzyme-Mg(II)-CrATP-pyruvate complex. The paramagnetic effect of enzyme-bound Mn(II) on 1/T1 of water protons decreases upon the addition of CrATP. Titration of the binary enzyme-Mn(II) complex with CrATP decreases the characteristic enhancement due to Mn(II) from 24 +/- 3 to 6 +/- 1. Titration of the ternary eznyme-Mn(II)-pyruvate complex with CrATP decreases the enhancement from 6 +/- 1 to 0.5 +/- 0.1. The affinity of the enzyme for Mn(II) is increased 2-fold upon binding of CrATP as indicated by decreases in the amplitude of the EPR spectrum of free Mn(II). The dissociation constants of CrATP from the enzyme-Mn(II)-CrATP complex, the enzyme-CrATP-pyruvate complex, and the enzyme-Mn(II)-CrATP-pyruvate complex are all 200 muM. The observed titration behavior, the characteristic enhancement values, the tightening by Mg(II) of the binding of CrATP to the enzyme, and the tightening of the binding of Mn(II) to the enzyme by CrATP establish the existence of enzyme-M(II)-CrATP and enzyme-M(II)-CrATP-pyruvate complexes containing two cations, Mg(II) or Mn(II) and Cr(III), at the active site.

摘要

通过测量CrATP对丙酮酸烯醇化动力学以及对水的质子、丙酮酸的质子和碳原子的纵向核磁弛豫率(1/T1)的影响,研究了ATP的一种稳定、取代惰性、顺磁性三齿配合物CrATP与肌肉丙酮酸激酶的相互作用,以探究双金属酶-M(II)-CrATP配合物的存在和活性,并确定激酶上底物间的距离。与酶络合后,CrATP对水质子1/T1的顺磁效应增强。用CrATP滴定该酶,二元酶-CrATP、三元酶-Mg(II)-CrATP和四元酶-Mg(II)-CrATP-丙酮酸配合物的1/T1特征增强分别为3.5、1.7和1.2,CrATP的解离常数分别为400、200和200 μM。根据1/T1的频率依赖性,在CrATP以及三元酶-Mg(II)-CrATP配合物和四元酶-Mg(II)-CrATP-丙酮酸配合物中,Cr(III)配位球内快速交换的水质子数量约为6个。添加CrATP后,酶结合的Mn(II)对水质子1/T1的顺磁效应降低。用CrATP滴定二元酶-Mn(II)配合物,由于Mn(II)导致的特征增强从24±3降至6±1。用CrATP滴定三元酶-Mn(II)-丙酮酸配合物,增强从6±1降至0.5±0.1。如游离Mn(II)的电子顺磁共振谱振幅降低所示,结合CrATP后,酶对Mn(II)的亲和力增加了2倍。CrATP从酶-Mn(II)-CrATP配合物、酶-CrATP-丙酮酸配合物和酶-Mn(II)-CrATP-丙酮酸配合物的解离常数均为200 μM。观察到的滴定行为、特征增强值、Mg(II)对CrATP与酶结合的收紧作用以及CrATP对Mn(II)与酶结合的收紧作用,证实了在活性位点存在含有两个阳离子Mg(II)或Mn(II)以及Cr(III)的酶-M(II)-CrATP和酶-M(II)-CrATP-丙酮酸配合物。

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