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Directed Evolution of Carbonyl Reductase from<i>Rhodosporidium toruloides</i>and Its Application in Stereoselective Synthesis of<i>tert</i>-Butyl (3<i>R</i>,5<i>S</i>)-6-Chloro-3,5-dihydroxyhexanoate
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Citations
34
References
2017
Year
tert-Butyl (3R,5S)-6-chloro-3,5-dihydroxyhexanoate ((3R,5S)-CDHH) is a key intermediate of atorvastatin and rosuvastatin synthesis. Carbonyl reductase RtSCR9 from Rhodosporidium toruloides exhibited excellent activity toward tert-butyl (S)-6-chloro-5-hydroxy-3-oxohexanoate ((S)-CHOH). For the activity of RtSCR9 to be improved, random mutagenesis and site-saturation mutagenesis were performed. Three positive mutants were obtained (mut-Gln95Asp, mut-Ile144Lys, and mut-Phe156Gln). These mutants exhibited 1.94-, 3.03-, and 1.61-fold and 1.93-, 3.15-, and 1.97-fold improvement in the specific activity and k<sub>cat</sub>/K<sub>m</sub>, respectively. Asymmetric reduction of (S)-CHOH by mut-Ile144Lys coupled with glucose dehydrogenase was conducted. The yield and enantiomeric excess of (3R,5S)-CDHH reached 98 and 99%, respectively, after 8 h bioconversion in a single batch reaction with 1 M (S)-CHOH, and the space-time yield reached 542.83 mmol L<sup>-1</sup> h<sup>-1</sup> g<sup>-1</sup> wet cell weight. This study presents a new carbonyl reductase for efficient synthesis of (3R,5S)-CDHH.
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