EXPRESSION IN ESCHERICHIA COLI AND CHARACTERIZATION OF A LIPASE FROM BURKHOLDERIA SP.

碩士 === 大同大學 === 生物工程學系(所) === 101 === Due to the concerns of fossil oil shortage, development of alternative energy sources has long been the focus of research. In this study, heterologous expression and biochemical properties of a lipase which can be potentially used for biodiesel production was in...

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Main Authors: Cheng-Bin Zheng, 鄭成彬
Other Authors: I-Ching Kuan
Format: Others
Language:zh-TW
Published: 2013
Online Access:http://ndltd.ncl.edu.tw/handle/77899220110973365919
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spelling ndltd-TW-101TTU051060392015-10-13T22:56:53Z http://ndltd.ncl.edu.tw/handle/77899220110973365919 EXPRESSION IN ESCHERICHIA COLI AND CHARACTERIZATION OF A LIPASE FROM BURKHOLDERIA SP. Burkholderia sp.脂解酶於大腸桿菌中的表現和特徵化 Cheng-Bin Zheng 鄭成彬 碩士 大同大學 生物工程學系(所) 101 Due to the concerns of fossil oil shortage, development of alternative energy sources has long been the focus of research. In this study, heterologous expression and biochemical properties of a lipase which can be potentially used for biodiesel production was investigated. lipA and lipB encoding lipase and lipase-specific foldase, respectively, were cloned from Burkholderia sp. and heterologously expressed in E. coli. lipA bearing the DNA sequence for its original signal peptide or that with corresponding sequence replaced by pelB leader sequence was constructed along with lipB onto expression vectors pHlipAB26 and ppelBHnosLipAB26. After 18 h induction by IPTG, maximal expression of 38,000 and 50,000 U/L, respectively, was achieved. SDS-PAGE and Western blotting analyses indicated that signal peptides for active lipases were removed, resulting in production of nosLipA and HnosLipA having molecular weights of 33.1 and 34.1 kDa and specific activities of 1302 and 1061 U/mg, respectively. Both lipases displayed the highest hydrolysis activity toward p-nitrophenyl laurate. The temperature optimum for nosLipA and HnosLipA were both at 50oC, while Tm values (the temperature at which 50% activity was remained after 1 h incubation) were 47.5 and 46oC, respectively. The optimal pH was 10 and 9.5, respectively, while the best pH stability were both at 8.0. Pre-treatment of 20% (v/v) n-butanol could only improve nosLipA activity, but Ca2+, 0.1% (v/v) Tween 40, Tween 80, Triton X-100 and SDS enhanced activities for both lipases. Cell extracts of recombinant E. coli carrying pHlipAB26 and ppelBHnosLipAB26 were capable of catalyzing transesterification of soybean oil. Under the conditions examined, a 4:1 molar ratio of no70LipB lacking N-terminal 70 amino acids of LipB to LipA could assist in vitro refolding of inactive LipA with the best recovery of the specific activity of 4 U/mg. I-Ching Kuan 官宜靜 2013 學位論文 ; thesis 121 zh-TW
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description 碩士 === 大同大學 === 生物工程學系(所) === 101 === Due to the concerns of fossil oil shortage, development of alternative energy sources has long been the focus of research. In this study, heterologous expression and biochemical properties of a lipase which can be potentially used for biodiesel production was investigated. lipA and lipB encoding lipase and lipase-specific foldase, respectively, were cloned from Burkholderia sp. and heterologously expressed in E. coli. lipA bearing the DNA sequence for its original signal peptide or that with corresponding sequence replaced by pelB leader sequence was constructed along with lipB onto expression vectors pHlipAB26 and ppelBHnosLipAB26. After 18 h induction by IPTG, maximal expression of 38,000 and 50,000 U/L, respectively, was achieved. SDS-PAGE and Western blotting analyses indicated that signal peptides for active lipases were removed, resulting in production of nosLipA and HnosLipA having molecular weights of 33.1 and 34.1 kDa and specific activities of 1302 and 1061 U/mg, respectively. Both lipases displayed the highest hydrolysis activity toward p-nitrophenyl laurate. The temperature optimum for nosLipA and HnosLipA were both at 50oC, while Tm values (the temperature at which 50% activity was remained after 1 h incubation) were 47.5 and 46oC, respectively. The optimal pH was 10 and 9.5, respectively, while the best pH stability were both at 8.0. Pre-treatment of 20% (v/v) n-butanol could only improve nosLipA activity, but Ca2+, 0.1% (v/v) Tween 40, Tween 80, Triton X-100 and SDS enhanced activities for both lipases. Cell extracts of recombinant E. coli carrying pHlipAB26 and ppelBHnosLipAB26 were capable of catalyzing transesterification of soybean oil. Under the conditions examined, a 4:1 molar ratio of no70LipB lacking N-terminal 70 amino acids of LipB to LipA could assist in vitro refolding of inactive LipA with the best recovery of the specific activity of 4 U/mg.
author2 I-Ching Kuan
author_facet I-Ching Kuan
Cheng-Bin Zheng
鄭成彬
author Cheng-Bin Zheng
鄭成彬
spellingShingle Cheng-Bin Zheng
鄭成彬
EXPRESSION IN ESCHERICHIA COLI AND CHARACTERIZATION OF A LIPASE FROM BURKHOLDERIA SP.
author_sort Cheng-Bin Zheng
title EXPRESSION IN ESCHERICHIA COLI AND CHARACTERIZATION OF A LIPASE FROM BURKHOLDERIA SP.
title_short EXPRESSION IN ESCHERICHIA COLI AND CHARACTERIZATION OF A LIPASE FROM BURKHOLDERIA SP.
title_full EXPRESSION IN ESCHERICHIA COLI AND CHARACTERIZATION OF A LIPASE FROM BURKHOLDERIA SP.
title_fullStr EXPRESSION IN ESCHERICHIA COLI AND CHARACTERIZATION OF A LIPASE FROM BURKHOLDERIA SP.
title_full_unstemmed EXPRESSION IN ESCHERICHIA COLI AND CHARACTERIZATION OF A LIPASE FROM BURKHOLDERIA SP.
title_sort expression in escherichia coli and characterization of a lipase from burkholderia sp.
publishDate 2013
url http://ndltd.ncl.edu.tw/handle/77899220110973365919
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