Structural Studies on Membrane-Associate Cytochrome B5 and P450 NMR
Structural Studies on Membrane-Associate Cytochrome B5 and P450 NMR
批准号:
8197110
负责人:
Ayyalusamy Ramamoorthy
金额:
$40.34万
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-01-01 至 2013-11-30
关键词:
Amino Acid SequenceAmino AcidsAnisotropyBindingBinding ProteinsBiologicalCatalysisCellular MembraneChemicalsClinicalCollaborationsComplexCouplingCytochrome P450Cytochromes b5CytosolDataDevelopmentElectron TransportElectronsEndoplasmic ReticulumEnsureEnvironmentEnzymesExcisionHemeLabelLeadLengthLightLipid BilayersLocationMagicMeasurementMeasuresMembraneMembrane ProteinsMethodsMicellesMichiganMinnesotaMolecularMolecular WeightMotionNMR SpectroscopyOryctolagus cuniculusOutcomeOutcome StudyPeptide HydrolasesPharmaceutical PreparationsPhasePlayPreparationProductionPropertyProtein ConformationProtein DynamicsProtein NMR SpectroscopyProteinsPublic HealthReactionResearchResidual stateResolutionRoentgen RaysRoleSamplingSideSolutionsSpecific qualifier valueSteroidsStructureSystemTechniquesTemperatureTertiary Protein StructureTestingTimeTissuesTransmembrane DomainTryptophanUniversitiesUnsaturated FatsVertebral columnVesicleWaterX-Ray Crystallographyaqueousbasecell typefatty acid biosynthesisflexibilityinsightinterestlipid metabolismmembrane modelmutantnoveloxidationprotein structurepublic health relevancereconstitutionresearch studysolid state nuclear magnetic resonancetestosterone biosynthesisthree dimensional structure
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): The main objective of the proposed research is to determine the structure of a 16.7 kDa membrane-associated cytochrome-b5, an electron transfer protein found in a variety of cell types. It plays a major role in the catalytic activity of cytochrome-P450, which metabolizes more than 50% of the drugs in clinical use today. It is also involved as an electron transfer component in a number of oxidative reactions in biological tissues, which includes the anabolic metabolism of fats and steroids. It presents significant challenges for experimental techniques of protein structure determination. However, structure determination of membrane proteins by NMR spectroscopy is in a rapid phase of development; recent results on several membrane proteins are promising and indicate that the structure determination of cytochrome-b5 is feasible. The structure of cytochrome-b5 will be determined in micelles by solution NMR and in lipid bilayers by solid state NMR techniques. Structures obtained in free and in complexation with cytochrome-P450 will provide insights into the molecular mechanism by which cytochrome-b5 influences the catalysis of cytochrome-P450. PUBLIC HEALTH RELEVANCE: The outcome of the proposed structural studies on cytochrome-b5 will provide insights into molecular mechanism by which cytochrome-b5 influences oxidation by cytochrome- P450 that metabolizes more than 50% of current-day drugs. These studies will also enable us to understand the role of cytochrome-b5 in the biosynthesis of testosterone and numerous unsaturated lipids, which are necessary for maintaining the integrity of cellular membranes.
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