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Structure-Guided Modulation of the Catalytic Properties of [2Fe-2S]-Dependent Dehydratases.
Melse, Okke; Sutiono, Samuel; Haslbeck, Magdalena; Schenk, Gerhard; Antes, Iris; Sieber, Volker.
Afiliação
  • Melse O; Chair of Chemistry of Biogenic Resources, Campus Straubing for Biotechnology and Sustainability, Technical University of Munich, Schulgasse 16, 94315, Straubing, Germany.
  • Sutiono S; SynBiofoundry@TUM, Technical University of Munich, Schulgasse 22, 94315, Straubing, Germany.
  • Haslbeck M; TUM Center for Functional Protein Assemblies, Technical University of Munich, Ernst-Otto-Fischer-Straße 8, 85748, Garching, Germany.
  • Schenk G; Chair of Chemistry of Biogenic Resources, Campus Straubing for Biotechnology and Sustainability, Technical University of Munich, Schulgasse 16, 94315, Straubing, Germany.
  • Antes I; SynBiofoundry@TUM, Technical University of Munich, Schulgasse 22, 94315, Straubing, Germany.
  • Sieber V; Chair of Chemistry of Biogenic Resources, Campus Straubing for Biotechnology and Sustainability, Technical University of Munich, Schulgasse 16, 94315, Straubing, Germany.
Chembiochem ; 23(10): e202200088, 2022 05 18.
Article em En | MEDLINE | ID: mdl-35263023
The FeS cluster-dependent dihydroxyacid dehydratases (DHADs) and sugar acid-specific dehydratases (DHTs) from the ilvD/EDD superfamily are key enzymes in the bioproduction of a wide variety of chemicals. We analyzed [2Fe-2S]-dependent dehydratases in silico and in vitro, deduced functionally relevant sequence, structure, and activity relationships within the ilvD/EDD superfamily, and we propose a new classification based on their evolutionary relationships and substrate profiles. In silico simulations and analyses identified several key positions for specificity, which were experimentally investigated with site-directed and saturation mutagenesis. We thus increased the promiscuity of DHAD from Fontimonas thermophila (FtDHAD), showing >10-fold improved activity toward D-gluconate, and shifted the substrate preference of DHT from Paralcaligenes ureilyticus (PuDHT) toward shorter sugar acids (recording a six-fold improved activity toward the non-natural substrate D-glycerate). The successful elucidation of the role of important active site residues of the ilvD/EDD superfamily will further guide developments of this important biocatalyst for industrial applications.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Hidroliases Idioma: En Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Hidroliases Idioma: En Ano de publicação: 2022 Tipo de documento: Article