Heme-bound nitroxyl, hydroxylamine, and ammonia ligands as intermediates in the reaction cycle of cytochrome c nitrite reductase: a theoretical study

被引:22
|
作者
Bykov, Dmytro [1 ]
Plog, Matthias [2 ]
Neese, Frank [1 ]
机构
[1] Max Planck Inst Chem Energiekonvers, D-45470 Mulheim, Germany
[2] Univ Bonn, Inst Phys & Theoret Chem, D-53115 Bonn, Germany
来源
关键词
Cytochrome c nitrite reductase; Proton-coupled electron transfer; Density functional theory; Heme-iron enzymes; DESULFOVIBRIO-DESULFURICANS ATCC-27774; AUXILIARY BASIS-SETS; ELECTRONIC-STRUCTURE; WOLINELLA-SUCCINOGENES; CORRELATION-ENERGY; REACTION-MECHANISM; ESCHERICHIA-COLI; HARTREE-FOCK; OXIDE; HNO;
D O I
10.1007/s00775-013-1065-6
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In this article, we consider, in detail, the second half-cycle of the six-electron nitrite reduction mechanism catalyzed by cytochrome c nitrite reductase. In total, three electrons and four protons must be provided to reach the final product, ammonia, starting from the HNO intermediate. According to our results, the first event in this half-cycle is the reduction of the HNO intermediate, which is accomplished by two PCET reactions. Two isomeric radical intermediates, HNOHaEuro cent and H2NOaEuro cent, are formed. Both intermediates are readily transformed into hydroxylamine, most likely through intramolecular proton transfer from either Arg(114) or His(277). An extra proton must enter the active site of the enzyme to initiate heterolytic cleavage of the N-O bond. As a result of N-O bond cleavage, the H2N+ intermediate is formed. The latter readily picks up an electron, forming H2N+aEuro cent, which in turn reacts with Tyr(218). Interestingly, evidence for Tyr(218) activity was provided by the mutational studies of Lukat (Biochemistry 47:2080, 2008), but this has never been observed in the initial stages of the overall reduction process. According to our results, an intramolecular reaction with Tyr(218) in the final step of the nitrite reduction process leads directly to the final product, ammonia. Dissociation of the final product proceeds concomitantly with a change in spin state, which was also observed in the resonance Raman investigations of Martins et al. (J Phys Chem B 114:5563, 2010).
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页码:97 / 112
页数:16
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