Cloning, expression, and physicochemical characterization of a new diheme cytochrome c from Shewanella baltica OS155

被引:0
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作者
Giulia Di Rocco
Gianantonio Battistuzzi
Carlo Augusto Bortolotti
Marco Borsari
Erika Ferrari
Stefano Monari
Marco Sola
机构
[1] University of Modena and Reggio Emilia,Department of Chemistry
[2] CNR-INFM National Center,undefined
[3] NanoStructures and BioSystems at Surfaces (S3),undefined
关键词
Cytochrome; Electron transfer; Heme; Thermodynamics; Electrochemistry;
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学科分类号
摘要
The 16-kDa diheme cytochrome c from the bacterium Shewanella baltica OS155 (Sb-DHC) was cloned and expressed in Escherichia coli and investigated through UV–vis, magnetic circular dichroism, and 1H NMR spectroscopies and protein voltammetry. The model structure was obtained by means of comparative modeling using the X-ray structure of Rhodobacter sphaeroides diheme cytochrome c (Rs-DHC) (with a 37% pairwise sequence identity) as a template. Sb-DHC folds into two distinct domains, each containing one heme center with a bis-His axial ligation. Both secondary and tertiary structures of the N-terminal domain resemble those of class I cytochrome c, displaying three α-helices and a compact overall folding. The C-terminal domain is less helical than the corresponding domain of Rs-DHC. The two heme groups are bridged by Tyr26 in correspondence with the shortest edge-to-edge distance, a feature which would facilitate fast internal electron transfer. The electronic properties of the two prosthetic centers are equivalent and sensitive to two acid–base equilibria with pKa values of approximately 2.4 and 5, likely corresponding to protonation and detachment of the axial His ligands from the heme iron and a pH-linked conformational change of the protein, respectively. Reduction potentials of −0.144 and −0.257 V (vs. the standard hydrogen electrode), were determined for the C- and N-terminal heme groups, respectively. An approach based on the extended Debye–Hückel equation was applied for the first time to a two-centered metalloprotein and was found to reproduce successfully the ionic strength dependence of E°′.
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页码:461 / 471
页数:10
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