Directed Evolution of a Glutathione Transferase for the Development of a Biosensor for Alachlor Determination

dc.contributor.authorPerperopoulou Fereniki
dc.contributor.authorFragoulaki Maria
dc.contributor.authorPapageorgiou Anastassios C
dc.contributor.authorLabrou Nikolaos E
dc.contributor.organizationfi=Turun biotiedekeskus|en=Turku Bioscience Centre|
dc.contributor.organization-code1.2.246.10.2458963.20.18586209670
dc.converis.publication-id55571451
dc.converis.urlhttps://research.utu.fi/converis/portal/Publication/55571451
dc.date.accessioned2022-10-28T14:24:49Z
dc.date.available2022-10-28T14:24:49Z
dc.description.abstractIn the present work, DNA recombination of three homologous tau class glutathione transferases (GSTUs) allowed the creation of a library of tau class GmGSTUs. The library was activity screened for the identification of glutathione transferase (GST) variants with enhanced catalytic activity towards the herbicide alachlor (2-chloro-2 ',6 '-diethyl-N-(methoxymethyl)acetanilide). One enzyme variant (GmGSTsf) with improved catalytic activity and binding affinity for alachlor was identified and explored for the development of an optical biosensor for alachlor determination. Kinetics analysis and molecular modeling studies revealed a key mutation (Ile69Val) at the subunit interface (helix alpha 3) that appeared to be responsible for the altered catalytic properties. The enzyme was immobilized directly on polyvinylidenefluoride membrane by crosslinking with glutaraldehyde and was placed on the inner surface of a plastic cuvette. The rate of pH changes observed as a result of the enzyme reaction was followed optometrically using a pH indicator. A calibration curve indicated that the linear concentration range for alachlor was 30-300 mu M. The approach used in the present study can provide tools for the generation of novel enzymes for eco-efficient and environment-friendly analytical technologies. In addition, the outcome of this study gives an example for harnessing protein symmetry for enzyme design.
dc.identifier.jour-issn2073-8994
dc.identifier.olddbid188119
dc.identifier.oldhandle10024/171213
dc.identifier.urihttps://www.utupub.fi/handle/11111/39803
dc.identifier.urnURN:NBN:fi-fe2021093049060
dc.language.isoen
dc.okm.affiliatedauthorPapageorgiou, Anastassios
dc.okm.discipline318 Medical biotechnologyen_GB
dc.okm.discipline318 Lääketieteen bioteknologiafi_FI
dc.okm.internationalcopublicationinternational co-publication
dc.okm.internationalityInternational publication
dc.okm.typeA1 ScientificArticle
dc.publisherMDPI
dc.publisher.countrySwitzerlanden_GB
dc.publisher.countrySveitsifi_FI
dc.publisher.country-codeCH
dc.relation.articlenumberARTN 461
dc.relation.doi10.3390/sym13030461
dc.relation.ispartofjournalSymmetry
dc.relation.issue3
dc.relation.volume13
dc.source.identifierhttps://www.utupub.fi/handle/10024/171213
dc.titleDirected Evolution of a Glutathione Transferase for the Development of a Biosensor for Alachlor Determination
dc.year.issued2021

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