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dc.creatorMichou M., Stergios A., Skretas G.en
dc.date.accessioned2023-01-31T08:59:57Z
dc.date.available2023-01-31T08:59:57Z
dc.date.issued2020
dc.identifier10.1002/bit.27378
dc.identifier.issn00063592
dc.identifier.urihttp://hdl.handle.net/11615/76626
dc.description.abstractThe bacterium Escherichia coli is among the most popular hosts for recombinant protein production, including that of membrane proteins (MPs). We have recently generated the specialized MP-producing E. coli strain SuptoxD, which upon co-expression of the effector gene djlA, is capable of alleviating two major bottlenecks in bacterial recombinant MP production: it suppresses the toxicity that frequently accompanies the MP-overexpression process and it markedly increases the cellular accumulation of membrane incorporated and properly folded recombinant MP. Combined, these two positive effects result in dramatically enhanced volumetric yields for various recombinant MPs of both prokaryotic and eukaryotic origin. Based on the observation that djlA is found in the genomes of various pathogenic bacteria, the aim of the present work was to investigate (a) whether other naturally occurring DjlA variants can exert the MP toxicity-suppressing and production-promoting effects similarly to the E. coli DjlA and (b) if we can identify a DjlA variant whose efficiency surpasses that of the E. coli DjlA of SuptoxD. We report that a quite surprisingly broad variety of homologous DjlA proteins exert beneficial effects on recombinant MP when overexpressed in E. coli. Furthermore, we demonstrate that the Salmonella enterica DjlA is an even more potent enhancer of MP productivity compared with the E. coli DjlA of SuptoxD. Based on this, we constructed a second-generation SuptoxD strain, termed SuptoxD2.0, whose MP-production capabilities surpass significantly those of the original SuptoxD, and we anticipate that SuptoxD2.0 will become a broadly utilized expression host for recombinant MP production in bacteria. © 2020 Wiley Periodicals LLCen
dc.language.isoenen
dc.sourceBiotechnology and Bioengineeringen
dc.source.urihttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85085017668&doi=10.1002%2fbit.27378&partnerID=40&md5=eb9967d2eba9ecedde0d60bc62d2caf2
dc.subjectEscherichia colien
dc.subjectSalmonellaen
dc.subjectToxicityen
dc.subjectBeneficial effectsen
dc.subjectEngineered escherichia colien
dc.subjectMembrane proteinsen
dc.subjectNaturally occurringen
dc.subjectPathogenic bacteriumen
dc.subjectProduction capabilitiesen
dc.subjectRecombinant protein productionsen
dc.subjectSalmonella entericaen
dc.subjectRecombinant proteinsen
dc.subjectmembrane proteinen
dc.subjectrecombinant proteinen
dc.subjectDjlA protein, E colien
dc.subjectEscherichia coli proteinen
dc.subjectheat shock protein 40en
dc.subjectmembrane proteinen
dc.subjectrecombinant proteinen
dc.subjectArticleen
dc.subjectbacterial geneen
dc.subjectbacterial genomeen
dc.subjectbacterial strainen
dc.subjectcontrolled studyen
dc.subjectdjlA geneen
dc.subjectEscherichia colien
dc.subjectgene overexpressionen
dc.subjectgenetic engineeringen
dc.subjectgenetic variationen
dc.subjectnonhumanen
dc.subjectprotein foldingen
dc.subjectSalmonella entericaen
dc.subjectsequence homologyen
dc.subjectgeneticsen
dc.subjectmetabolic engineeringen
dc.subjectmetabolismen
dc.subjectproceduresen
dc.subjectEscherichia colien
dc.subjectEscherichia coli Proteinsen
dc.subjectHSP40 Heat-Shock Proteinsen
dc.subjectMembrane Proteinsen
dc.subjectMetabolic Engineeringen
dc.subjectRecombinant Proteinsen
dc.subjectJohn Wiley and Sons Inc.en
dc.titleSuptoxD2.0: A second-generation engineered Escherichia coli strain achieving further enhanced levels of recombinant membrane protein productionen
dc.typejournalArticleen


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