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      Mechanistic Insight on the Activity and Substrate Selectivity of Nonheme Iron Dioxygenases.

      1
      Chemical record (New York, N.Y.)
      Wiley
      QM/MM, density functional theory, enzyme catalysis, enzyme mechanism, nonheme iron

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          Abstract

          Nonheme iron dioxygenases catalyze vital reactions for human health particularly related to aging processes. They are involved in the biosynthesis of amino acids, but also the biodegradation of toxic compounds. Typically they react with their substrate(s) through oxygen atom transfer, although often with the assistance of a co-substrate like α-ketoglutarate that is converted to succinate and CO2 . Many reaction processes catalyzed by the nonheme iron dioxygenases are stereoselective or regiospecific and hence understanding the mechanism and protein involvement in the selectivity is important for the design of biotechnological applications of these enzymes. To this end, I will review recent work of our group on nonheme iron dioxygenases and include background information on their general structure and catalytic cycle. Examples of stereoselective and regiospecific reaction mechanisms we elucidated are for the AlkB repair enzyme, prolyl-4-hydroxylase and the ergothioneine biosynthesis enzyme. Finally, I cover an example where we bioengineered S-p-hydroxymandelate synthase into the R-p-hydroxymandelate synthase.

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          Author and article information

          Journal
          Chem Rec
          Chemical record (New York, N.Y.)
          Wiley
          1528-0691
          1528-0691
          Oct 2018
          : 18
          : 10
          Affiliations
          [1 ] Manchester Institute of Biotechnology and School of Chemical Engineering and Analytical Science, The University of Manchester, 131 Princess Street, Manchester, M1 7DN, United Kingdom.
          Article
          10.1002/tcr.201800033
          29878456
          84a236c3-938f-4bdf-929f-1f85eed65e14
          © 2018 The Chemical Society of Japan & Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim.
          History

          QM/MM,density functional theory,enzyme catalysis,enzyme mechanism,nonheme iron

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