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      Addressing Ligand-Based Redox in Molybdenum-Dependent Methionine Sulfoxide Reductase

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          Abstract

          A combination of pulsed EPR, CW EPR, and XAS spectroscopies have been employed to probe the geometric and electronic structure of the E. coli periplasmic molybdenum-dependent methionine sulfoxide reductase (MsrP). 17O and 1H pulsed EPR spectra show that the as-isolated Mo(V) enzyme form does not possess an exchangeable H 2O/OH ligand bound to Mo as found in the sulfite oxidizing enzymes of the same family. The nature of the unusual CW EPR spectrum has been re-evaluated in light of new data on the MsrP-N45R variant and related small molecule analogs of the active site. These data point to a novel “thiol-blocked” [(PDT)Mo VO(S Cys)(thiolate)] 1− structure, which is supported by new EXAFS data. We discuss these new results in the context of ligand-based and metal-based redox chemistry in the enzymatic oxygen atom transfer reaction.

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          Journal
          7503056
          4435
          J Am Chem Soc
          J Am Chem Soc
          Journal of the American Chemical Society
          0002-7863
          1520-5126
          9 February 2021
          28 January 2020
          12 February 2020
          07 March 2021
          : 142
          : 6
          : 2721-2725
          Affiliations
          [1 ]Department of Chemistry and Chemical Biology, The University of New Mexico, MSC03 2060, 1 University of New Mexico, Albuquerque, NM 87131-0001, USA
          [2 ]Department of Chemistry Biochemistry, University of Arizona, Tucson, AZ 85721, USA
          [3 ]Department of Biochemistry, 474 Medical Science Building, University of Alberta, Edmonton, Alberta T6G 2H7, Canada.
          [4 ]Department of Biology, The University of New Mexico, MSC03 2060, 1 University of New Mexico, Albuquerque, NM 87131-0001, USA
          Author notes
          [‡]

          L.J.I and J.Y contributed equally to this manuscript

          Corresponding Author: Martin L. Kirk, Department of Chemistry and Chemical Biology, The University of New Mexico, MSC03 2060, 1 University of New Mexico, Albuquerque, NM 87131-0001, USA
          Article
          PMC7937415 PMC7937415 7937415 nihpa1670598
          10.1021/jacs.9b11762
          7937415
          31989824
          8c82fe89-078e-41b9-a80d-75df943f1e71
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