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通过电子顺磁共振光谱检测甲胺脱氢酶与氨蓝蛋白和细胞色素c551i的二元和三元复合物晶体中的电子转移。

Electron transfer in crystals of the binary and ternary complexes of methylamine dehydrogenase with amicyanin and cytochrome c551i as detected by EPR spectroscopy.

作者信息

Ferrari Davide, Di Valentin Marilena, Carbonera Donatella, Merli Angelo, Chen Zhi-wei, Mathews F Scott, Davidson Victor L, Rossi Gian Luigi

机构信息

Department of Biochemistry and Molecular Biology, University of Parma, Parco Area delle Scienze 23/A, 43100 Parma, Italy.

出版信息

J Biol Inorg Chem. 2004 Mar;9(2):231-7. doi: 10.1007/s00775-003-0513-0. Epub 2004 Jan 20.

Abstract

EPR studies of the methylamine dehydrogenase (MADH)-amicyanin and MADH-amicyanin-cytochrome c551i crystalline complexes have been performed on randomly oriented microcrystals before and after exposure to the substrate, methylamine, as a function of pH. The results show that EPR signals from the redox centers present in the various proteins can be observed simultaneously. These results complement and extend earlier studies of the complexes under similar conditions that utilized single-crystal polarized absorption microspectrophotometry. The binary complex shows a blue copper axial signal, characteristic of oxidized amicyanin. After reaction of substrate with the MADH coenzyme tryptophan tryptophylquinone (TTQ), the binary complex exhibits an equilibrium mixture of oxidized copper/reduced TTQ and reduced copper/TTQ. radical, whose ratio is dependent on the pH. In the oxidized ternary complex, the same copper axial signal is observed superimposed on the low-spin ferric heme features characteristic of oxidized cytochrome c551i. After addition of substrate to the ternary complex, a decrease of the copper signal is observed, concomitant with the appearance of the radical signal derived from the semiquinone form of TTQ. The equilibrium distribution of electrons between TTQ and copper as a function of pH is similar to that observed for the binary complex. This result was essential to establish that the copper center retains its function within the crystalline ternary complex. At high pH, with time the low-spin heme EPR features disappear and the spectrum indicates that full reduction of the complex by substrate has occurred.

摘要

对甲胺脱氢酶(MADH)-氨蓝蛋白和MADH-氨蓝蛋白-细胞色素c551i晶体复合物进行了电子顺磁共振(EPR)研究,研究对象是随机取向的微晶,研究了其在暴露于底物甲胺前后随pH值变化的情况。结果表明,可以同时观察到各种蛋白质中存在的氧化还原中心的EPR信号。这些结果补充并扩展了早期在类似条件下利用单晶偏振吸收显微分光光度法对该复合物进行的研究。二元复合物显示出氧化氨蓝蛋白特有的蓝色铜轴向信号。底物与MADH辅酶色氨酸色氨酰醌(TTQ)反应后,二元复合物呈现出氧化铜/还原TTQ和还原铜/TQ·自由基的平衡混合物,其比例取决于pH值。在氧化的三元复合物中,观察到相同的铜轴向信号叠加在氧化细胞色素c551i特有的低自旋铁血红素特征上。向三元复合物中加入底物后,观察到铜信号降低,同时出现源自TTQ半醌形式的自由基信号。TTQ和铜之间电子的平衡分布随pH值的变化与二元复合物中观察到的情况相似。这一结果对于确定铜中心在晶体三元复合物中保持其功能至关重要。在高pH值下,随着时间的推移,低自旋血红素EPR特征消失,光谱表明复合物已被底物完全还原。

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