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dc.creatorMichou M., Kapsalis C., Pliotas C., Skretas G.en
dc.date.accessioned2023-01-31T08:59:56Z
dc.date.available2023-01-31T08:59:56Z
dc.date.issued2019
dc.identifier10.1021/acssynbio.9b00120
dc.identifier.issn21615063
dc.identifier.urihttp://hdl.handle.net/11615/76625
dc.description.abstractMembrane proteins (MPs) execute a wide variety of critical biological functions in all living organisms and constitute approximately half of current targets for drug discovery. As in the case of soluble proteins, the bacterium Escherichia coli has served as a very popular overexpression host for biochemical/structural studies of membrane proteins as well. Bacterial recombinant membrane protein production, however, is typically hampered by poor cellular accumulation and severe toxicity for the host, which leads to low levels of final biomass and minute volumetric yields. In previous work, we generated the engineered E. coli strains SuptoxD and SuptoxR, which upon coexpression of the effector genes djlA or rraA, respectively, can suppress the cytotoxicity caused by MP overexpression and produce enhanced MP yields. Here, we systematically looked for gene overexpression and culturing conditions that maximize the accumulation of membrane-integrated and well-folded recombinant MPs in these strains. We have found that, under optimal conditions, SuptoxD and SuptoxR achieve greatly enhanced recombinant production for a variety of MP, irrespective of their archaeal, eubacterial, or eukaryotic origin. Furthermore, we demonstrate that the use of these engineered strains enables the production of well-folded recombinant MPs of high quality and at high yields, which are suitable for functional and structural studies. We anticipate that SuptoxD and SuptoxR will become broadly utilized expression hosts for recombinant MP production in bacteria. © 2019 American Chemical Society.en
dc.language.isoenen
dc.sourceACS Synthetic Biologyen
dc.source.urihttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85070118447&doi=10.1021%2facssynbio.9b00120&partnerID=40&md5=b35e4b303cf60d4d4da20ec30dbb8c8c
dc.subjectmembrane proteinen
dc.subjectrecombinant proteinen
dc.subjectEscherichia coli proteinen
dc.subjectmembrane proteinen
dc.subjectrecombinant proteinen
dc.subjectArticleen
dc.subjectbacterial geneen
dc.subjectbiochemical analysisen
dc.subjectbiotechnological productionen
dc.subjectcontrolled studyen
dc.subjectcytotoxicityen
dc.subjectdjla geneen
dc.subjectEscherichia colien
dc.subjectfluorescenceen
dc.subjectgene overexpressionen
dc.subjectgenetic engineeringen
dc.subjectnonhumanen
dc.subjectplasmiden
dc.subjectpriority journalen
dc.subjectprocess optimizationen
dc.subjectprotein foldingen
dc.subjectrraa geneen
dc.subjectstructure analysisen
dc.subjectbiomassen
dc.subjectEscherichia colien
dc.subjectgene expressionen
dc.subjectgeneticsen
dc.subjectBiomassen
dc.subjectEscherichia colien
dc.subjectEscherichia coli Proteinsen
dc.subjectGene Expressionen
dc.subjectMembrane Proteinsen
dc.subjectRecombinant Proteinsen
dc.subjectAmerican Chemical Societyen
dc.titleOptimization of Recombinant Membrane Protein Production in the Engineered Escherichia coli Strains SuptoxD and SuptoxRen
dc.typejournalArticleen


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