Structure-guided semi-rational design of an imine reductase for enantio-complementary synthesis of pyrrolidinamine

In this study, engineered imine reductases (IREDs) of IRED M5, originally from Actinoalloteichus hymeniacidonis , were obtained through structure-guided semi-rational design. By focusing on mutagenesis of the residues that directly interact with the ketone donor moiety, we identified two residues W2...

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Veröffentlicht in:Chemical science (Cambridge) 2023-04, Vol.14 (16), p.4265-4272
Hauptverfasser: Zhang, Jun, Ma, Yaqing, Zhu, Fangfang, Bao, Jinping, Wu, Qiaqing, Gao, Shu-Shan, Cui, Chengsen
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Sprache:eng
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Zusammenfassung:In this study, engineered imine reductases (IREDs) of IRED M5, originally from Actinoalloteichus hymeniacidonis , were obtained through structure-guided semi-rational design. By focusing on mutagenesis of the residues that directly interact with the ketone donor moiety, we identified two residues W234 and F260, playing essential roles in enhancing and reversing the stereoselectivity, respectively. Moreover, two completely enantio-complementary variants S241L/F260N ( R -selectivity up to 99%) and I149D/W234I ( S -selectivity up to 99%) were achieved. Both variants showed excellent stereoselectivity toward the tested substrates, offering valuable biocatalysts for synthesizing pyrrolidinamines. Its application was demonstrated in a short synthesis of the key intermediates of potential drug molecules leniolisib and JAK1 inhibitor 4 , from cheap and commercially available pro-chiral N -Boc-piperidone 1 (2 and 3 steps, respectively). In this study, engineered imine reductases (IREDs) of IRED M5, originally from Actinoalloteichus hymeniacidonis , were obtained through structure-guided semi-rational design.
ISSN:2041-6520
2041-6539
DOI:10.1039/d2sc07014f