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dc.contributor.authorGomes, Daniela Filipa Correiapor
dc.contributor.authorRodrigues, Joana Lúcia Lima Correiapor
dc.contributor.authorRodrigues, L. R.por
dc.date.accessioned2023-09-04T13:09:34Z-
dc.date.available2023-09-04T13:09:34Z-
dc.date.issued2023-08-29-
dc.identifier.citationGomes, Daniela; Rodrigues, Joana L.; Rodrigues, Lígia R., Combinatorial approaches to achieve de novo production of prenylated flavonoids in Escherichia coli. Swiss-UK Synthetic Biology Conference. No. 26, Lausanne, Switzerland, Aug 29-30, 64, 2023.por
dc.identifier.urihttps://hdl.handle.net/1822/86288-
dc.description.abstractPrenylflavonoids are characterized by the presence of a lipophilic prenyl side-chain in the flavonoid skeleton exhibiting a wide range of bioactivities. They are present only in residual amounts in nature and their extraction is difficult and environmentally unfriendly. Using microorganisms as microbial cell factories is an interesting alternative to produce prenylflavonoids in an efficient and cheaper way. In this work, we designed, constructed, and validated a biosynthetic pathway to produce prenylnaringenins in Escherichia coli for the first time. Firstly, tyrosine ammonia-lyase, 4-coumarate-CoA ligase, chalcone synthase and chalcone isomerase were expressed to produce the intermediary naringenin. An optimized E. coli strain was able to produce 689.5 mg/L of naringenin. Then, a prenyltransferase (PT) was expressed to produce prenylnaringenins. Four different PTs were first tested in vitro to evaluate their ability to convert naringenin into a prenylated compound. From the tested PTs, two were derived from plants (PT from Humulus lupulus (HlPT) and PT from Sophora flavescens (SfPT)). Since plant PTs are membrane-bound enzymes, two alternative soluble PTs from fungi (CdpC3PT and AnaPT from Neosartorya fischeri) were also tested. All the PTs showed in vitro ability to convert naringenin into a prenylated compound. Then, these PTs were expressed in the previously constructed and optimized E. coli strain. In vivo production experiments were carried out to produce prenylnaringenins using only glucose as substrate and it was demonstrated that prenylnaringenins were produced but only in residual amounts. To overcome this limitation, an optimized E. coli strain able to produce high amounts of the extender substrates of the pathway (malonyl-CoA and dimethylallyl pyrophosphate) will be constructed sorting to synthetic biology approaches. This work represents a step- forward to achieve for the fi rst time de novo production of prenylflavonoids in E. coli.por
dc.description.sponsorshipDaniela Gomes acknowledges SFRH/BD/04433/2020 grant, from Portuguese Foundation for Science and Technology (FCT). This study was supported by the Portuguese Foundation for Science and Technology (FCT) under the scope of the strategic funding of UIDB/04469/2020 unitpor
dc.language.isoengpor
dc.relationSFRH/BD/04433/2020por
dc.relationinfo:eu-repo/grantAgreement/FCT/6817 - DCRRNI ID/UIDB%2F04469%2F2020/PTpor
dc.rightsopenAccesspor
dc.titleCombinatorial approaches to achieve de novo production of prenylated flavonoids in Escherichia colipor
dc.typeconferenceAbstractpor
dc.peerreviewedyespor
dc.relation.publisherversionhttps://swissuk-synbio.org/por
dc.commentsCEB56386por
oaire.citationConferenceDate29 - 30 Aug. 2023por
sdum.event.typeconferencepor
oaire.citationStartPage64por
oaire.citationEndPage64por
oaire.citationIssue26-
oaire.citationConferencePlaceLausanne, Switzerlandpor
dc.date.updated2023-09-04T09:42:10Z-
dc.description.publicationversioninfo:eu-repo/semantics/publishedVersion-
sdum.conferencePublicationSwiss-UK Synthetic Biology Conferencepor
Aparece nas coleções:CEB - Resumos em Livros de Atas / Abstracts in Proceedings

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