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dc.contributor.authorKoehbach, J.
dc.contributor.authorO'Brien, M.
dc.contributor.authorMuttenthaler, M.
dc.contributor.authorMiazzo, M.
dc.contributor.authorAkcan, M.
dc.contributor.authorElliott, A. G.
dc.contributor.authorDaly, N. L.
dc.contributor.authorHarvey, P. J.
dc.contributor.authorArrowsmith, S.
dc.contributor.authorGunasekera, S.
dc.contributor.authorSmith, T. J.
dc.contributor.authorWray, S.
dc.contributor.authorGoransson, U.
dc.contributor.authorDawson, P. E.
dc.contributor.authorCraik, D. J.
dc.contributor.authorFreissmuth, M.
dc.contributor.authorGruber, C. W.
dc.date.accessioned2018-09-20T16:13:25Z
dc.date.available2018-09-20T16:13:25Z
dc.date.issued2013-11-18
dc.identifier.citationKoehbach, J. O'Brien, M.; Muttenthaler, M.; Miazzo, M.; Akcan, M.; Elliott, A. G.; Daly, N. L.; Harvey, P. J.; Arrowsmith, S.; Gunasekera, S.; Smith, T. J.; Wray, S.; Goransson, U.; Dawson, P. E.; Craik, D. J.; Freissmuth, M.; Gruber, C. W. (2013). Oxytocic plant cyclotides as templates for peptide g protein-coupled receptor ligand design. Proceedings of the National Academy of Sciences 110 (52), 21183-21188
dc.identifier.issn0027-8424,1091-6490
dc.identifier.urihttp://hdl.handle.net/10379/12293
dc.description.abstractCyclotides are plant peptides comprising a circular backbone and three conserved disulfide bonds that confer them with exceptional stability. They were originally discovered in Oldenlandia affinis based on their use in traditional African medicine to accelerate labor. Recently, cyclotides have been identified in numerous plant species of the coffee, violet, cucurbit, pea, potato, and grass families. Their unique structural topology, high stability, and tolerance to sequence variation make them promising templates for the development of peptide-based pharmaceuticals. However, the mechanisms underlying their biological activities remain largely unknown; specifically, a receptor for a native cyclotide has not been reported hitherto. Using bioactivity-guided fractionation of an herbal peptide extract known to indigenous healers as "kalata-kalata," the cyclotide kalata B7 was found to induce strong contractility on human uterine smooth muscle cells. Radioligand displacement and second messenger-based reporter assays confirmed the oxytocin and vasopressin V-1a receptors, members of the G protein-coupled receptor family, as molecular targets for this cyclotide. Furthermore, we show that cyclotides can serve as templates for the design of selective G protein-coupled receptor ligands by generating an oxytocin-like peptide with nanomolar affinity. This nonapeptide elicited dose-dependent contractions on human myometrium. These observations provide a proof of concept for the development of cyclotide-based peptide ligands.
dc.publisherProceedings of the National Academy of Sciences
dc.relation.ispartofProceedings of the National Academy of Sciences
dc.rightsAttribution-NonCommercial-NoDerivs 3.0 Ireland
dc.rights.urihttps://creativecommons.org/licenses/by-nc-nd/3.0/ie/
dc.subjectcircular plant peptide
dc.subjectpeptide ligand design
dc.subjectuterotonic
dc.subjectchemical pharmacology
dc.subjectpeptide drugs
dc.subjectcyclic-cystine-knot
dc.subjectkalata b1
dc.subjectuterine contractility
dc.subjecthuman myometrium
dc.subjectdrug design
dc.subjectvasopressin
dc.subjectantagonists
dc.subjectbinding
dc.subjectagonist
dc.subjectmechanism
dc.titleOxytocic plant cyclotides as templates for peptide g protein-coupled receptor ligand design
dc.typeArticle
dc.identifier.doi10.1073/pnas.1311183110
dc.local.publishedsourcehttp://www.pnas.org/content/110/52/21183.full.pdf
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