详细信息
Access to Optically Active Aryl Halohydrins Using a Substrate-Tolerant Carbonyl Reductase Discovered from Kluyveromyces thermotolerans ( SCI-EXPANDED收录)
文献类型:期刊文献
英文题名:Access to Optically Active Aryl Halohydrins Using a Substrate-Tolerant Carbonyl Reductase Discovered from Kluyveromyces thermotolerans
作者:Xu, Guo-Chao[1];Yu, Hui-Lei[1];Zhang, Xiao-Yan[1];Xu, Jian-He[1]
机构:[1]E China Univ Sci & Technol, Lab Biocatalysis & Synthet Biotechnol, State Key Lab Bioreactor Engn, Shanghai 200237, Peoples R China
年份:2012
卷号:2
期号:12
起止页码:2566
外文期刊名:ACS CATALYSIS
收录:;WOS:【SCI-EXPANDED(收录号:WOS:000312170100016)】;
基金:This work was financially supported by the National Natural Science Foundation of China (Nos. 20902023 and 21276082), Ministry of Science and Technology, P.R. China (Nos. 2011CB710800 and 2011AA02A210), Ministry of Education (No. 20090074120014), and Shanghai Municipal Education Commission (No. 11CXY24).
语种:英文
外文关键词:carbonyl reductase; asymmetric hydrogen transfer; aryl halohydrin; Kluyveromyces thermotolerans; genome data mining; substrate/product tolerance
摘要:By genome data mining, a carbonyl reductase tool box was designed and developed for chiral alcohol synthesis. On the basis of systematic comparison of the specific activity and substrate tolerance toward alpha-chloroacetophenone among reductases in this tool box, KtCR, a highly substrate-/product-tolerant carbonyl reductase from Kluyveromyces thermotolerans, was identified. The reduction of a series of substituted aryl ketones was investigated using this newly mined biocatalyst. Almost all of the ketones tested were asymmetrically reduced into corresponding chiral alcohols in 99% ee. Substrates with substituents adjacent to the carbonyl group or those with substituents on the para position of the phenyl ring were easier to reduce. For alpha-choloacetophenone as a representative substrate, as much as 154 g/L (1.0 M) of the substrate was asymmetrically reduced within merely 12 h by lyophilized cells of Escherichia coli/pET28-KtCR, resulting in an isolated yield of 92%, an enantiopurity of >99% ee, and a total turnover number of 5000, which was five times higher than the highest record reported so far. These results indicate the great potential of KtCR in practical synthesis of valuable aryl halohydrins as versatile chiral synthons.
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