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肌酸激酶过渡态类似物复合物中锰(II)的六种配体的鉴定:来自选择性标记配体的氧-17超精细偶合

Identification of the six ligands to manganese(II) in transition-state-analogue complexes of creatine kinase: oxygen-17 superhyperfine coupling from selectively labeled ligands.

作者信息

Reed G H, Leyh T S

出版信息

Biochemistry. 1980 Nov 25;19(24):5472-80. doi: 10.1021/bi00565a002.

Abstract

The complete coordination scheme for Mn(II) in transition-state-analogue complexes with creatine kinase has been determined by electron paramagnetic resonance (EPR) spectroscopy. Perturbations in the EPR spectra for Mn(II) due to superhyperfine coupling to 17O of selectively labeled ligands have been used to identify oxygen ligands in the first coordination sphere of the metal ion. The results show that in the complex of enzyme-MnADP-formate-creatine, Mn(II) is bound to oxygen ligands from both the alpha- and beta-phosphate groups of ADP, to an oxygen from the carboxylate group of formate, and to three water molecules. In the complex with thiocyanate replacing formate as the stabilizing anion, previous infrared experiments [Reed, G. H., Barlow, C. H., & Burns, R. A., Jr. (1978) J. Biol. Chem. 253, 4153-4158] indicated that the nitrogen from thiocyanate was bound to the Mn(II). The magnitudes of the 17O superphyperfine coupling constants from the O- ligands of the ADP phosphate groups and from the formate carboxylate are approximately equal and are larger than that for the water ligands. The symmetry of the zero-field-splitting tensor for Mn(II) indicates that the oxygens from the alpha- and beta-phosphate groups of ADP and the ligand donor atom from the anion occupy mutually cis positions in the octahedral coordination geometry. Water proton relaxation time measurements show that the three water molecules which are bound to Mn(II) are not in free exchange with the bulk solvent. Hence, an enclosed structure at the active site is indicated. The results suggest that for creatine kinase the activating metal ion is bound to all three phosphate groups in the transition state of the reaction.

摘要

通过电子顺磁共振(EPR)光谱法确定了锰(II)在与肌酸激酶形成的过渡态类似物配合物中的完整配位方案。利用与选择性标记配体的17O的超超精细耦合对锰(II)的EPR光谱的扰动来识别金属离子第一配位层中的氧配体。结果表明,在酶-MnADP-甲酸-肌酸配合物中,锰(II)与ADP的α-和β-磷酸基团的氧配体、甲酸羧酸盐基团的一个氧以及三个水分子结合。在硫氰酸盐取代甲酸作为稳定阴离子的配合物中,先前的红外实验[Reed, G. H., Barlow, C. H., & Burns, R. A., Jr. (1978) J. Biol. Chem. 253, 4153-4158]表明硫氰酸盐的氮与锰(II)结合。来自ADP磷酸基团的O-配体和甲酸羧酸盐的17O超超精细耦合常数的大小大致相等,且大于水配体的耦合常数。锰(II)的零场分裂张量的对称性表明,ADP的α-和β-磷酸基团的氧以及阴离子的配体供体原子在八面体配位几何中占据相互顺式位置。水质子弛豫时间测量表明,与锰(II)结合的三个水分子与本体溶剂没有自由交换。因此,表明活性位点存在封闭结构。结果表明,对于肌酸激酶,活化金属离子在反应的过渡态与所有三个磷酸基团结合。

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