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Enhanced production of recombinant thermo-stable lipase in Escherichia coli at high induction temperature

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논문

Enhanced production of recombinant thermo-stable lipase in Escherichia coli at high induction temperature

학술지

Protein expression and purification

저자명

Velez, A.M.; Horta, A.C.L.; da Silva, A.J.; Iemma, M.R.d.C.; Giordano, R.d.L.C.; Zangirolami, T.C.

초록

Thermostable microbial lipases are potential candidates for industrial applications such as specialty organic syntheses as well as hydrolysis of fats and oils. In this work, basic biochemical engineering tools were applied to enhance the production of BTL2 lipase cloned in Escherichia coli BL321 under control of the strong temperature-inducible &lambda;P<SUB>L</SUB> promoter. Initially, surface response analysis was used to assess the influence of growth and induction temperatures on enzyme production, in flask experiments. The results showed that temperatures of 30 and 45<SUP>o</SUP>C were the most suitable for growth and induction, respectively, and led to an enzyme specific activity of 706,000U/gDCW. The most promising induction conditions previously identified were validated in fed-batch cultivation, carried out in a 2L bioreactor. Specific enzyme activity reached 770,000U/gDCW, corresponding to 13,000U/L of culture medium and a lipase protein concentration of 10.8g/L. This superior performance on enzyme production was a consequence of the improved response of &lambda;P<SUB>L</SUB> promoter triggered by the high induction temperature applied (45<SUP>o</SUP>C). These results point out to the importance of taking into account protein structure and stability to adequately design the recombinant protein production strategy for thermally induced promoters.

발행연도

2013

발행기관

Academic Press

라이선스

publisher-specific-oa

ISSN

1046-5928

ISSN

1096-0279

90

2

페이지

pp.96-103

주제어

Recombinant Escherichia coli; Lipase; Geobacillus thermocatenulatus; λPL promoter; Fed-batch culture; Thermal induction

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1 2023-12-11

논문; 2013-08-01

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