4.4 Article

Structural insights into the role of the acid-alcohol pair of residues required for dioxygen activation in cytochrome P450 enzymes

期刊

JOURNAL OF BIOLOGICAL INORGANIC CHEMISTRY
卷 25, 期 4, 页码 583-596

出版社

SPRINGER
DOI: 10.1007/s00775-020-01781-4

关键词

Metalloenzymes; Heme; Cytochrome P450; Mechanism; X-ray crystallography; Dioxygen activation

资金

  1. ARC [FT140100355, DP140103229]
  2. Australian Government Research Training Program Scholarships
  3. ANSTO

向作者/读者索取更多资源

The cytochrome P450 heme monooxygenases commonly use an acid-alcohol pair of residues, within the I-helix, to activate iron-bound dioxygen. This work aims to clarify conflicting reports on the importance of the alcohol functionality in this process. Mutants of the P450, CYP199A4 (CYP199A4(D251N) and CYP199A4(T252A)), were prepared, characterised and their crystal structures were solved. The acid residue of CYP199A4 is not part of a salt bridge network, a key feature of paradigmatic model system P450cam. Instead, there is a direct proton delivery network, via a chain of water molecules, extending to the surface. Nevertheless, CYP199A4(D251N) dramatically reduced the activity of the enzyme consistent with a role in proton delivery. CYP199A4(T252A) decreased the coupling efficiency of the enzyme with a concomitant increase in the hydrogen peroxide uncoupling pathway. However, the effect of this mutation was much less pronounced than reported with P450cam. Its crystal structures revealed fewer changes at the I-helix, compared to the P450cam system. The structural changes observed within the I-helix of P450cam during oxygen activation do not seem to be required in this P450. These differences are due to the presence of a second threonine residue at position 253, which is absent in P450cam. This threonine forms part of the hydrogen bonding network, resulting in subtle structural changes and is also present across the majority of the P450 superfamily. Overall, the results suggest that while the acid-alcohol pair is important for dioxygen activation this process and the method of proton delivery can differ across P450s. Graphic abstract

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