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轴向连接和多肽基质对通过氰化物加合物探测的血红素蛋白还原电位的影响。

Axial ligation and polypeptide matrix effects on the reduction potential of heme proteins probed on their cyanide adducts.

作者信息

Battistuzzi G, Bellei M, Borsari M, Di Rocco G, Ranieri A, Sola M

机构信息

Department of Chemistry and Centro SCS, University of Modena and Reggio Emilia, via Campi 183, 41100, Modena, Italy.

出版信息

J Biol Inorg Chem. 2005 Oct;10(6):643-51. doi: 10.1007/s00775-005-0014-4. Epub 2005 Nov 2.

Abstract

The enthalpic and entropic changes accompanying the reduction reaction of the six-coordinate cyanide adducts of cytochrome c, microperoxidase-11 and a few plant peroxidases were measured electrochemically. Once the compensating changes in reduction enthalpy and entropy due to solvent reorganization effects are factorized out, it is found that cyanide binding stabilizes enthalpically the ferriheme following the order: cyochrome c > peroxidase > microperoxidase-11. The effect is inversely correlated to the solvent accessibility of the heme. Comparison of the reduction thermodynamics for the cyanide adducts of cytochrome c and plant peroxidases with those for microperoxidase-11 and myoglobin, respectively, yielded an estimate of the consequences of protein encapsulation and of the anionic character of the proximal histidine on the reduction potential of the heme-cyanide group. Insertion of the heme-CN group into the folded peptide chain of cyt c induces an enthalpy-based decrease in E degrees ' of approximately 100 mV, consistent with the lower net charge of the oxidized as compared to the reduced iron center, whereas a full imidazolate character of the proximal histidine stabilizes enthalpically the ferriheme by approximately 400 mV. The latter value should be best considered as an upper limit since it also includes some solvation effects arising from the nature of the protein systems being compared.

摘要

通过电化学方法测量了细胞色素c、微过氧化物酶-11和几种植物过氧化物酶的六配位氰化物加合物还原反应所伴随的焓变和熵变。一旦将溶剂重组效应引起的还原焓和熵的补偿变化分解出来,就会发现氰化物结合在焓上稳定高铁血红素,其顺序为:细胞色素c>过氧化物酶>微过氧化物酶-11。这种效应与血红素的溶剂可及性呈负相关。分别比较细胞色素c和植物过氧化物酶的氰化物加合物与微过氧化物酶-11和肌红蛋白的还原热力学,得出了蛋白质包裹和近端组氨酸的阴离子特性对血红素-氰化物基团还原电位影响的估计值。将血红素-CN基团插入细胞色素c的折叠肽链中会导致基于焓的E°'降低约100 mV,这与氧化态铁中心与还原态铁中心相比净电荷较低一致,而近端组氨酸的完全咪唑盐特性会使高铁血红素在焓上稳定约400 mV。后一个值最好被视为上限,因为它还包括了由于所比较的蛋白质系统的性质而产生的一些溶剂化效应。

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