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A Cold-Adapted Epoxide Hydrolase from a Strict Marine Bacterium, Sphingophyxis alaskensis
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  • A Cold-Adapted Epoxide Hydrolase from a Strict Marine Bacterium, Sphingophyxis alaskensis
  • A Cold-Adapted Epoxide Hydrolase from a Strict Marine Bacterium, Sphingophyxis alaskensis
저자명
Kang. Ji-Hyun,Woo. Jung-Hee,Kang. Sung-Gyun,Hwang. Young-Ok,Kim. Sang-Jin
간행물명
Journal of microbiology and biotechnology
권/호정보
2008년|18권 8호|pp.1445-1452 (8 pages)
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한국미생물생명공학회
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정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

An open reading frame (ORF) encoding a putative epoxide hydrolase (EHase) was identified by analyzing the genome sequence of Sphingophyxis alaskensis. The EHase gene (seh) was cloned and expressed in E. coli. To facilitate purification, the gene was fused in-frame to 6$ imes$ histidine at the C-terminus. The recombinant EHase (rSEH) was highly soluble and could be purified to apparent homogeneity by one step of metal affinity chromatography. The purified SEH displayed hydrolyzing activities toward various epoxides such as styrene oxide, glycidyl phenyl ether, epoxyhexane, epoxybutane, epichlorohydrin, and epifluorohydrin. The optimum activity toward styrene oxide was observed at pH 6.5 and $35^{circ}C$. The purified SEH showed a cold-adapted property, displaying more than 40% of activity at low temperature of $10^{circ}C$ compared with the optimum activity. Despite the catalytic efficiency, the purified SEH did not hydrolyze various epoxides enantioselectively. $K_m$ and $k_{cat}$ of SEH toward (R)-styrene oxide were calculated as 4$pm$0.3 mM and 7.42$s^{-1}$ respectively, whereas $K_m$ and $k_{cat}$ of SEH toward (S)-styrene oxide were 5.25$pm$0.3 mM and 10.08$s^{-1}$ respectively.