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Serial Femtosecond Zero Dose Crystallography Captures a Water-Free Distal Heme Site in a Dye-Decolorising Peroxidase to Reveal a Catalytic Role for an Arginine in FeIV=O Formation
Authors:Marina Lučić  Dr. Dimitri A. Svistunenko  Prof. Michael T. Wilson  Dr. Amanda K. Chaplin  Bradley Davy  Dr. Ali Ebrahim  Dr. Danny Axford  Dr. Takehiko Tosha  Dr. Hiroshi Sugimoto  Dr. Shigeki Owada  Dr. Florian S. N. Dworkowski  Dr. Ivo Tews  Dr. Robin L. Owen  Dr. Michael A. Hough  Dr. Jonathan A. R. Worrall
Affiliation:1. School of Life Sciences, University of Essex, Wivenhoe Park, Colchester, Essex, CO4 3SQ UK;2. Diamond Light Source, Harwell Science and Innovation Campus, Didcot, Oxfordshire, OX11 0DE UK;3. School of Life Sciences, University of Essex, Wivenhoe Park, Colchester, Essex, CO4 3SQ UK

Diamond Light Source, Harwell Science and Innovation Campus, Didcot, Oxfordshire, OX11 0DE UK;4. RIKEN Spring-8 Center, 1-1-1 Kouto, Sayo, Hyogo, 679-5148 Japan;5. Swiss Light Source, Paul Scherrer Institute, 5232 Villigen PSI, Switzerland;6. Biological Sciences, Institute for Life Sciences, University of Southampton, University Road, Southampton, SO17 1BJ UK

Abstract:Obtaining structures of intact redox states of metal centers derived from zero dose X-ray crystallography can advance our mechanistic understanding of metalloenzymes. In dye-decolorising heme peroxidases (DyPs), controversy exists regarding the mechanistic role of the distal heme residues aspartate and arginine in the heterolysis of peroxide to form the catalytic intermediate compound I (FeIV=O and a porphyrin cation radical). Using serial femtosecond X-ray crystallography (SFX), we have determined the pristine structures of the FeIII and FeIV=O redox states of a B-type DyP. These structures reveal a water-free distal heme site that, together with the presence of an asparagine, imply the use of the distal arginine as a catalytic base. A combination of mutagenesis and kinetic studies corroborate such a role. Our SFX approach thus provides unique insight into how the distal heme site of DyPs can be tuned to select aspartate or arginine for the rate enhancement of peroxide heterolysis.
Keywords:arginine  bioinorganic  heme proteins  peroxidase  X-ray serial femtosecond crystallography
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