Elucidating the molecular mechanisms of essential oils' insecticidal action using a novel cheminformatics protocol

dc.creatorCorrêa, Eduardo José Azevedo
dc.creatorCarvalho, Frederico Chaves
dc.creatorOliveira, Júlia Assunção de Castro
dc.creatorBertolucci, Suzan Kelly Vilela
dc.creatorScotti, Marcus Tullius
dc.creatorSilveira, Carlos Henrique
dc.creatorGuedes, Fabiana Costa
dc.creatorMelo, Júlio Onésio Ferreira
dc.creatorMelo-Minardi, Raquel Cardoso de
dc.creatorLima, Leonardo Henrique França de
dc.date.accessioned2023-07-11T13:19:25Z
dc.date.available2023-07-11T13:19:25Z
dc.date.issued2023
dc.description.abstractEssential oils (EOs) are a promising source for novel environmentally safe insecticides. However, the structural diversity of their compounds poses challenges to accurately elucidate their biological mechanisms of action. We present a new chemoinformatics methodology aimed at predicting the impact of essential oil (EO) compounds on the molecular targets of commercial insecticides. Our approach merges virtual screening, chemoinformatics, and machine learning to identify custom signatures and reference molecule clusters. By assigning a molecule to a cluster, we can determine its most likely interaction targets. Our findings reveal that the main targets of EOs are juvenile hormone-specific proteins (JHBP and MET) and octopamine receptor agonists (OctpRago). Three of the twenty clusters show strong similarities to the juvenile hormone, steroids, and biogenic amines. For instance, the methodology successfully identified E-Nerolidol, for which literature points indications of disrupting insect metamorphosis and neurochemistry, as a potential insecticide in these pathways. We validated the predictions through experimental bioassays, observing symptoms in blowflies that were consistent with the computational results. This new approach sheds a higher light on the ways of action of EO compounds in nature and biotechnology. It also opens new possibilities for understanding how molecules can interfere with biological systems and has broad implications for areas such as drug design.pt_BR
dc.identifier.citationCORRÊA, E. J. A. et al. Elucidating the molecular mechanisms of essential oils' insecticidal action using a novel cheminformatics protocol. Scientific Reports, [S.l.], v. 13, 2023.pt_BR
dc.identifier.urihttps://repositorio.ufla.br/handle/1/58103
dc.identifier.urihttps://www.nature.com/articles/s41598-023-29981-3pt_BR
dc.languageen_USpt_BR
dc.publisherNaturept_BR
dc.rightsrestrictAccesspt_BR
dc.sourceScientific Reportspt_BR
dc.subjectBiochemistrypt_BR
dc.subjectCheminformaticspt_BR
dc.subjectVirtual drug screeningpt_BR
dc.titleElucidating the molecular mechanisms of essential oils' insecticidal action using a novel cheminformatics protocolpt_BR
dc.typeArtigopt_BR

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