4.7 Article

Engineering the heterologous expression of lanthipeptides in Escherichia coli by multigene assembly

Journal

APPLIED MICROBIOLOGY AND BIOTECHNOLOGY
Volume 99, Issue 15, Pages 6351-6361

Publisher

SPRINGER
DOI: 10.1007/s00253-015-6557-6

Keywords

Heterologous expression; Genetic engineering; Lantibiotic; Lichenicidin; Synthetic biology

Funding

  1. 7th Framework program of the European Union [FP7-KBBE-2011-5-CP-CSA]
  2. Einstein Foundation [A-2011-53]
  3. Coli4Lan project - Fundacao para a Ciencia e a Tecnologia I.P. (PIDDAC) [FCOMP-01-0124-FEDER-027569]
  4. Fundo Europeu de Desenvolvimento Regional-FEDER, through the COMPETE-Programa Operacional Fatores de Competitividade (POFC)

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Lantibiotics are an important class of ribosomally synthesised peptide antibiotics with a remarkable pharmacological potential. Structural variants of lantibiotics generated by peptide engineering in vivo are an important aspect for improving the peptide's efficacy, stability and bioavailability as well as production titre, which severely impacts the potential exploitation in pharmaceutical applications. Therefore, expression systems are needed which allow for a robust genetic access for ample mutagenesis experiments. Based on previous heterologous expression of the two-component lanthipeptide lichenicidin (Bli alpha and Bli beta) in Escherichia coli BLic5, we now employ a multigene assembly strategy for recombinant lantibiotic peptide production in the Gram-negative host. Two E. coli high copy plasmids for separate and increased expression of a two-component lantibiotic were cloned and tested for expression. From these E. coli HP expression strains, an up to 100 times increased expression was found compared with Bacillus licheniformis I89 and E. coli BLic5. Total expression yields reach 4 mg L-1 for Bli alpha and 6 mg L-1 for Bli beta. The expression system developed in this study constitutes an important cornerstone for future in vivo peptide engineering studies and is of significance for potential applications aiming at higher production titres of ribosomally synthesised, post translationally modified peptides.

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