화학공학소재연구정보센터
Science, Vol.342, No.6160, 825-829, 2013
Iron(IV)hydroxide pK(a) and the Role of Thiolate Ligation in C-H Bond Activation by Cytochrome P450
Cytochrome P450 enzymes activate oxygen at heme iron centers to oxidize relatively inert substrate carbon-hydrogen bonds. Cysteine thiolate coordination to iron is posited to increase the pK(a) (where K-a is the acid dissociation constant) of compound II, an iron(IV)hydroxide complex, correspondingly lowering the one-electron reduction potential of compound I, the active catalytic intermediate, and decreasing the driving force for deleterious auto-oxidation of tyrosine and tryptophan residues in the enzyme's framework. Here, we report on the preparation of an iron(IV) hydroxide complex in a P450 enzyme (CYP158) in >= 90% yield. Using rapid mixing technologies in conjunction with Mossbauer, ultraviolet/visible, and x-ray absorption spectroscopies, we determine a pK(a) value for this compound of 11.9. Marcus theory analysis indicates that this elevated pK(a) results in a >10,000-fold reduction in the rate constant for oxidations of the protein framework, making these processes noncompetitive with substrate oxidation.