Literature DB >> 28204885

De-bugging and maximizing plant cytochrome P450 production in Escherichia coli with C-terminal GFP fusions.

Ulla Christensen1, Dario Vazquez-Albacete1, Karina M Søgaard1, Tonja Hobel1, Morten T Nielsen1, Scott James Harrison1, Anders Holmgaard Hansen1, Birger Lindberg Møller2,3, Susanna Seppälä4, Morten H H Nørholm5.   

Abstract

Cytochromes P450 (CYP) are attractive enzyme targets in biotechnology as they catalyze stereospecific C-hydroxylations of complex core skeletons at positions that typically are difficult to access by chemical synthesis. Membrane bound CYPs are involved in nearly all plant pathways leading to the formation of high-value compounds. In the present study, we systematically maximize the heterologous expression of six different plant-derived CYP genes in Escherichia coli, using a workflow based on C-terminal fusions to the green fluorescent protein. The six genes can be over-expressed in both K- and B-type E. coli strains using standard growth media. Furthermore, sequences encoding a small synthetic peptide and a small bacterial membrane anchor markedly enhance the expression of all six genes. For one of the CYPs, the length of the linker region between the predicted N-terminal transmembrane segment and the soluble domain is modified, in order to verify the importance of this region for enzymatic activity. The work describes how membrane bound CYPs are optimally produced in E. coli and thus adds this plant multi-membered key enzyme family to the toolbox for bacterial cell factory design.

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Keywords:  Cell factories; Cytochromes P450; Medicinal compounds; Membrane protein; Protein production

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Year:  2017        PMID: 28204885     DOI: 10.1007/s00253-016-8076-5

Source DB:  PubMed          Journal:  Appl Microbiol Biotechnol        ISSN: 0175-7598            Impact factor:   4.813


  1 in total

1.  Engineering of Yarrowia lipolytica for the production of plant triterpenoids: Asiatic, madecassic, and arjunolic acids.

Authors:  Jonathan Asmund Arnesen; Arian Belmonte Del Ama; Sidharth Jayachandran; Jonathan Dahlin; Daniela Rago; Aaron John Christian Andersen; Irina Borodina
Journal:  Metab Eng Commun       Date:  2022-03-26
  1 in total

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