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[2Fe-2S]铁氧化还原蛋白与无机试剂电子转移反应中的静电效应

Electrostatic effects in electron transfer reactions of [2Fe-2S] ferredoxins with inorganic reagents.

作者信息

Vidakovic M, Germanas J P

机构信息

Department of Chemistry, University of Houston, Texas 77204-5641, USA.

出版信息

Protein Sci. 1996 Sep;5(9):1793-9. doi: 10.1002/pro.5560050905.

Abstract

The kinetics of electron transfer from the reduced [2Fe-2S] ferredoxins from the cyanobacterium Anabaena 7120 and the protozoan Trichomonas vaginalis to select cobalt coordination compounds have been studied in order to gain insight into the mechanism of electron transfer and intrinsic reactivity of [2Fe-2S] active sites. With tripositive cobalt complexes, reactions of both proteins displayed saturation kinetics; values of association constants of 12,900 and 1,400 M-1 and limiting rate constants of 7.6 and 3.5 s-1 were found for oxidation of T. vaginalis and Anabaena ferredoxins, respectively, by Co(NH3)6(3+) at room temperature and I = 0.1 M. An activation enthalpy of 12.1 kcal/mol and activation entropy of -14.3 cal/mol K for oxidation of T. vaginalis ferredoxin by Co(NH3)6(3+) contrasted with corresponding values of 13.4 kcal/mol and -10.5 cal/mol K for the Spirulina platensis protein, which is homologous to Anabaena ferredoxin. The dependence of the reaction rates on ionic strength were measured to probe the importance of electrostatics on the reactivity of the proteins. Analysis of the ionic strength dependence of the oxidation of the proteins by Co(NH3)6(3+) by the "parallel plate" model of Watkins et al. (1994, Protein Sci 3:2104-2114) afforded values for active site charges of -0.7 and -1.1 and limiting rate constants at infinite ionic strength of 25,800 and 76 M-1 S-1 for T. vaginalis and Anabaena ferredoxins, respectively. These results suggest that the [2Fe-2S] center of the protozoal ferredoxin is more accessible and adjacent to a less highly charged, more compact patch of negative charges than the photosynthetic protein.

摘要

为深入了解电子转移机制以及[2Fe-2S]活性位点的内在反应活性,研究了来自蓝藻鱼腥藻7120和原生动物阴道毛滴虫的还原型[2Fe-2S]铁氧化还原蛋白与特定钴配位化合物之间的电子转移动力学。对于三价钴配合物,两种蛋白质的反应均呈现饱和动力学;在室温及I = 0.1 M条件下,Co(NH3)6(3+)氧化阴道毛滴虫和鱼腥藻铁氧化还原蛋白时,其缔合常数分别为12,900和1,400 M-1,极限速率常数分别为7.6和3.5 s-1。Co(NH3)6(3+)氧化阴道毛滴虫铁氧化还原蛋白的活化焓为12.1 kcal/mol,活化熵为-14.3 cal/mol K,而与鱼腥藻铁氧化还原蛋白同源的钝顶螺旋藻蛋白的相应值分别为13.4 kcal/mol和-10.5 cal/mol K。通过测量反应速率对离子强度的依赖性,以探究静电作用对蛋白质反应活性的重要性。利用Watkins等人(1994年,《蛋白质科学》3:2104 - 2114)的“平行板”模型分析Co(NH3)6(3+)氧化蛋白质的离子强度依赖性,得出阴道毛滴虫和鱼腥藻铁氧化还原蛋白活性位点电荷分别为-0.7和-1.1,在无限离子强度下的极限速率常数分别为25,800和76 M-1 S-

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