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Asymmetric synthesis of syn-aryl-(2S,3R)-2-chloro-3-hydroxy esters via an engineered ketoreductase-catalyzed dynamic reductive kinetic resolution
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作者 Xiaoping Yue Yitong Li +3 位作者 Di Sang Yuan Tao Zedu Huang Fener Chen 《Chinese Chemical Letters》 SCIE CAS CSCD 2023年第9期156-159,共4页
We report here a generic,green synthesis of 17 valuable syn-aryl-(2S,3R)-2–chloro-3–hydroxy esters(syn-(2S,3R)-1)in 73%-99%isolated yields along with 6.1:1–83:1 dr and 31%~>99%ee,through dynamic reductive kineti... We report here a generic,green synthesis of 17 valuable syn-aryl-(2S,3R)-2–chloro-3–hydroxy esters(syn-(2S,3R)-1)in 73%-99%isolated yields along with 6.1:1–83:1 dr and 31%~>99%ee,through dynamic reductive kinetic resolution of racemic arylα–chloroβ-keto esters(2)catalyzed by an engineered ketoreductase which was obtained via ep PCR-based directed evolution.The hectogram scale synthesis of syn-(2S,3R)-1b at a substrate concentration of 120 g/L showcased the application potential of the biocatalytic method developed presently. 展开更多
关键词 (2S 3R)-2-Chloro-3-hydroxy esters Dynamic reductive kinetic resolution ketoreductase Directed evolution Asymmetric synthesis
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A ketoreductase gene from Streptomyces mycarofaciens 1748 DNA involved in biosynthesis of a spore pigment 被引量:1
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作者 夏焕章 王以光 《Science China(Life Sciences)》 SCIE CAS 1997年第6期636-641,共6页
An efficient plasmid transformation system for S. mycarofaciens 1748 has been established. In order to determine the function of MKR gene in S. mycarofaciens 1748, the gene disruption experiment was carried out. For t... An efficient plasmid transformation system for S. mycarofaciens 1748 has been established. In order to determine the function of MKR gene in S. mycarofaciens 1748, the gene disruption experiment was carried out. For this purpose the plasmid pKC1139 was used. A recombinant strain with white spore appeared, in contrast to the grey-colour spore of S. mycarofaciens 1748. This suggested that homologous recombination between plasmid-borne MKR gene sequence and the chromosome of S. mycarofaciens 1748 had occurred. A Southern hybridization experiment using α- P-labelled MKR gene as probe indicated that the desired integration event had occurred in the re-combinant. The result of gene disruption showed that the alteration of this gene in the chromosome of S. mycarofa-ciens 1748 made sporulating colonies remain white instead of taking on the typical grey colour of sporulating wild type colonies, suggesting that MKR gene is involved in the biosynthesis of a spore pigment. The recombinant strain was in-cubated with fermentation medium optimised for midecamycin production. A TLC assay showed that the recombinant strain produced midecamycin in quantities comparable to that of S. mycarofaciens 1748. A pCN8B12 was a clone from genomic library of midecamycin producing strain which contained a 28-kb DNA insert. The 28-kb DNA fragment contained act I -homologous and actⅢ-homologous regions. The PKS (act I -homologous) and MKR (act Ⅲ-homolo-gous) genes that define spore pigment of midecamycin producing strain were localized by restriction endonuclease diges-tion with pCN8B12, indicating that they are separated by about 10 kb DNA. The polyketide synthase gene cluster of similar organization has not been reported yet. 展开更多
关键词 GENE disruption SPORE PIGMENT ketoreductase midecamycin.
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