Perturbation of the peptidoglycan network and utilization of the signal recognition particle-dependent pathway enhances the extracellular production of a truncational mutant of CelA in Escherichia coli

J Ind Microbiol Biotechnol. 2021 Jul 1;48(5-6):kuab032. doi: 10.1093/jimb/kuab032.

Abstract

Caldicellulosiruptor bescii is the most thermophilic, cellulolytic bacterium known and has the native ability to utilize unpretreated plant biomass. Cellulase A (CelA) is the most abundant enzyme in the exoproteome of C. bescii and is primarily responsible for its cellulolytic ability. CelA contains a family 9 glycoside hydrolase and a family 48 glycoside hydrolase connected by linker regions and three carbohydrate-binding domains. A truncated version of the enzyme (TM1) containing only the endoglucanase domain is thermostable and actively degrades crystalline cellulose. A catalytically active TM1 was successfully produced via the attachment of the PelB signal peptide (P-TM1), which mediates post-translational secretion via the SecB-dependent translocation pathway. We sought to enhance the extracellular secretion of TM1 using an alternative pathway, the signal recognition particle (SRP)-dependent translocation pathway. The co-translational extracellular secretion of TM1 via the SRP pathway (D-TM1) resulted in a specific activity that was 4.9 times higher than that associated with P-TM1 overexpression. In batch fermentations, the recombinant Escherichia coli overexpressing D-TM1 produced 1.86 ± 0.06 U/ml of TM1 in the culture medium, showing a specific activity of 1.25 ± 0.05 U/mg cell, 2.7- and 3.7-fold higher than the corresponding values of the strain overexpressing P-TM1. We suggest that the TM1 secretion system developed in this study can be applied to enhance the capacity of E. coli as a microbial cell factory for the extracellular secretion of this as well as a variety proteins important for commercial production.

Keywords: CelA; Extracellular secretion; Signal recognition particle-dependent pathway.

MeSH terms

  • Bacterial Proteins / biosynthesis
  • Bacterial Proteins / genetics
  • Bacterial Proteins / metabolism
  • Caldicellulosiruptor / enzymology
  • Caldicellulosiruptor / genetics
  • Carboxypeptidases / genetics
  • Cellulase / biosynthesis*
  • Cellulase / genetics
  • Cellulose / metabolism
  • DNA, Bacterial
  • Escherichia coli / genetics
  • Escherichia coli / metabolism*
  • Fermentation
  • Glycoside Hydrolases
  • Industrial Microbiology
  • Mutation
  • Peptidoglycan / genetics
  • Peptidoglycan / metabolism*
  • Protein Domains
  • Protein Sorting Signals
  • Protein Transport
  • Recombinant Proteins / biosynthesis
  • Secretory Pathway*
  • Signal Recognition Particle / metabolism*

Substances

  • Bacterial Proteins
  • DNA, Bacterial
  • Peptidoglycan
  • Protein Sorting Signals
  • Recombinant Proteins
  • SecB protein, Bacteria
  • Signal Recognition Particle
  • Cellulose
  • Glycoside Hydrolases
  • Cellulase
  • Carboxypeptidases

Supplementary concepts

  • Caldicellulosiruptor bescii