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Structural and Molecular Basis of the Catalytic Mechanism of Geranyl Pyrophosphate C6-Methyltransferase: Creation of an Unprecedented Farnesyl Pyrophosphate C6-Methyltransferase.
Tsutsumi, Hayama; Moriwaki, Yoshitaka; Terada, Tohru; Shimizu, Kentaro; Shin-Ya, Kazuo; Katsuyama, Yohei; Ohnishi, Yasuo.
Afiliação
  • Tsutsumi H; Department of Biotechnology, Graduate School of Agricultural and Life Sciences, The University of Tokyo, 1-1-1 Yayoi, Bunkyo-ku, Tokyo, 113-8657, Japan.
  • Moriwaki Y; Department of Biotechnology, Graduate School of Agricultural and Life Sciences, The University of Tokyo, 1-1-1 Yayoi, Bunkyo-ku, Tokyo, 113-8657, Japan.
  • Terada T; Collaborative Research Institute for Innovative Microbiology, The University of Tokyo, Tokyo, Japan.
  • Shimizu K; Department of Biotechnology, Graduate School of Agricultural and Life Sciences, The University of Tokyo, 1-1-1 Yayoi, Bunkyo-ku, Tokyo, 113-8657, Japan.
  • Shin-Ya K; Collaborative Research Institute for Innovative Microbiology, The University of Tokyo, Tokyo, Japan.
  • Katsuyama Y; Department of Biotechnology, Graduate School of Agricultural and Life Sciences, The University of Tokyo, 1-1-1 Yayoi, Bunkyo-ku, Tokyo, 113-8657, Japan.
  • Ohnishi Y; Collaborative Research Institute for Innovative Microbiology, The University of Tokyo, Tokyo, Japan.
Angew Chem Int Ed Engl ; 61(1): e202111217, 2022 01 03.
Article em En | MEDLINE | ID: mdl-34626048
Prenyl pyrophosphate methyltransferases enhance the structural diversity of terpenoids. However, the molecular basis of their catalytic mechanisms is poorly understood. In this study, using multiple strategies, we characterized a geranyl pyrophosphate (GPP) C6-methyltransferase, BezA. Biochemical analysis revealed that BezA requires Mg2+ and solely methylates GPP. The crystal structures of BezA and its complex with S-adenosyl homocysteine were solved at 2.10 and 2.56 Å, respectively. Further analyses using site-directed mutagenesis, molecular docking, molecular dynamics simulations, and quantum mechanics/molecular mechanics calculations revealed the molecular basis of the methylation reaction. Importantly, the function of E170 as a catalytic base to complete the methylation reaction was established. We also succeeded in switching the substrate specificity by introducing a W210A substitution, resulting in an unprecedented farnesyl pyrophosphate C6-methyltransferase.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Fosfatos de Poli-Isoprenil / Sesquiterpenos / Metiltransferases Idioma: En Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Fosfatos de Poli-Isoprenil / Sesquiterpenos / Metiltransferases Idioma: En Ano de publicação: 2022 Tipo de documento: Article