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J Appl Microbiol ; 135(5)2024 May 01.
Article de Anglais | MEDLINE | ID: mdl-38724452

RÉSUMÉ

AIM: Biotechnical processes in Escherichia coli often operate with artificial plasmids. However, these bioprocesses frequently encounter plasmid loss. To ensure stable expression of heterologous genes in E. coli BL21(DE3), a novel plasmid addiction system (PAS) was developed. METHODS AND RESULTS: This PAS employed an essential gene grpE encoding a cochaperone in the DnaK-DnaJ-GrpE chaperone system as the selection marker, which represented a chromosomal ΔgrpE mutant harboring episomal expression plasmids that carry supplementary grpE alleles to restore the deficiency. To demonstrate the feasibility of this system, it was implemented in phloroglucinol (PG) biosynthesis, manifesting improved host tolerance to PG and increased PG production. Specifically, PG titer significantly improved from 0.78 ± 0.02 to 1.34 ± 0.04 g l-1, representing a 71.8% increase in shake-flask fermentation. In fed-batch fermentation, the titer increased from 3.71 ± 0.11 to 4.54 ± 0.10 g l-1, showing a 22.4% increase. RNA sequencing and transcriptome analysis revealed that the improvements were attributed to grpE overexpression and upregulation of various protective chaperones and the biotin acetyl-CoA carboxylase ligase coding gene birA. CONCLUSION: This novel PAS could be regarded as a typical example of nonanabolite- and nonmetabolite-related PAS. It effectively promoted plasmid maintenance in the host, improved tolerance to PG, and increased the titer of this compound.


Sujet(s)
Protéines Escherichia coli , Escherichia coli , Phloroglucinol , Plasmides , Escherichia coli/génétique , Escherichia coli/métabolisme , Phloroglucinol/métabolisme , Phloroglucinol/analogues et dérivés , Plasmides/génétique , Protéines Escherichia coli/génétique , Protéines Escherichia coli/métabolisme , Fermentation , Protéines du choc thermique/génétique , Protéines du choc thermique/métabolisme
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