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Trapping reactive intermediates and their application towards catalysis

Organization HARVARD UNIVERSITYLocation CAMBRIDGE, UNITED STATESPosted 15 Mar 2022Deadline 31 Jan 2026 ⚠️
NIHUS FederalResearch GrantFY20253-D3-Dimensional3DAddressBacteriaBiological FunctionBiological ProcessCarbonCatalysisChemicalsChemistryCobaltComplexCopperCrystallizationCu elementCytochrome P-450Cytochrome P-450 Enzyme SystemCytochrome P450Cytochrome P450 Family GeneCytochromesDevelopmentElectronicsEndocrine Gland SecretionEnergy-Generating ResourcesEnzyme GeneEnzymesFamilyFatty AcidsFe elementFormulationGenerationsGoalsH-bondHormonesHydrocarbonsHydrogen BondingHydroxylasesHydroxylationIronLigandsMagnetometriesMetalsMethaneMethane hydroxylaseMixed Function OxidasesMixed Function OxygenasesModelingMonooxygenasesNi elementNickelO elementO2 elementOxidantsOxidation-ReductionOxidizing AgentsOxygenP450ParticulatePharmaceutical AgentPharmaceuticalsPharmacologic SubstancePharmacological SubstancePopulationPorphyrinsProcessProductivityPropertyReactionReagentRedoxRelaxationResearchRouteSeriesSpectroscopySpectrum AnalysesSpectrum AnalysisSteroid CompoundSteroidsSystemTherapeutic HormoneTransition ElementsWaste ManagementWaste Productsadductcatalystchemical synthesisdevelopmentalelectron acceptorelectronicelectronic deviceelectronic structureenergy sourceflexibilityflexiblefrontierfunctional groupfunctional mimicsimprovedinsightmagnetometrymetal complexmethane monooxygenasemethane monooxygenase hydroxylasemolecular orbitalmonomernoveloxeneoxidationoxidation reduction reactionpharmaceuticalsmall moleculetheoriesthree dimensionaltraittransition metal

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Description preview

Project Summary
The family of monooxygenase enzymes are utilized to perform oxidative group transfer catalysis to broadly drive

one of two functions: (1) metabolize hydrocarbon building blocks (e.g., steroids, fatty acids) for waste

management or hormone synthesis in cytrochrome P450 (CYPs); and (2) the utilization of methane as the sole

carbon…

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