Substrate Based Proteolytic Inhibitors for the Treatment of Huntington's Disease
Substrate Based Proteolytic Inhibitors for the Treatment of Huntington's Disease
批准号:
7611899
负责人:
Frederick S Hagen
金额:
$36.19万
依托单位:
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 2010-06-30
关键词:
Active SitesAdolescentAdverse effectsAffectAffinityAgeAgonistAmericanAmino Acid SequenceAmino AcidsAnimal ModelAnimal TestingApoptosisArginineBindingBinding ProteinsBiochemicalBiologicalBiological AssayBiological ModelsBiological ProcessCAG repeatCationsCentral Nervous System DiseasesChemicalsCleaved cellComplexComputer SimulationDNA Sequencing FacilityDataDementiaDevelopmentDiseaseDisease ProgressionDrug Delivery SystemsDrug DesignDrug ExposureDrug KineticsDrug toxicityEffectivenessEnzyme Inhibitor DrugsEnzyme InhibitorsEnzymesEvaluationExcretory functionFundingGenesGlutamineGoalsGuidelinesHot SpotHumanHuntington DiseaseHydrogen BondingHydrolysisHydrophobic InteractionsIn VitroIncidenceIndividualInheritedInterventionInvestigationKineticsLaboratoriesLeadLearningLengthLibrariesLifeLigandsMapsMarketingMetabolismMethodsModelingModificationMonoclonal AntibodiesMovement DisordersMusMutateNeurodegenerative DisordersNeuropathogenesisNuclear Magnetic ResonanceOnset of illnessOrganParentsPathogenesisPathologyPatientsPeptide HydrolasesPeptide LibraryPeptidesPeptoidsPerformancePharmaceutical PreparationsPharmacodynamicsPhasePhase I Clinical TrialsPhysiologicalProcessProtein BindingProtein FragmentProteinsProteolytic ProcessingPublishingRattusReproductionResearchRiskRoentgen RaysRoleRouteSchemeShapesSiteSmall Business Innovation Research GrantSocietiesSodium ChlorideSpecificityStagingStructureSurfaceSymptomsSystemTestingTherapeuticTissuesToxic effectTransgenic AnimalsTranslatingTrinucleotide RepeatsTryptophanTyrosineUnited StatesUniversitiesUrsidae FamilyWashingtonabsorptionanalogbasecaspase-3caspase-6combinatorialcostdesigndosagedrug developmentenzyme substrateexcitotoxicityflygood laboratory practicehuman Huntingtin proteinhuman tissueillness lengthin vitro Assayin vivoinhibitor/antagonistinnovationinterestmitochondrial dysfunctionmouse modelnovel therapeutic interventionpharmacophorepolyglutaminepreclinical studypreventprofessorpublic health relevancereceptorsmall moleculesymptom managementtheoriestherapeutic targettissue culture
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Huntington's disease (HD) is an inherited autosomal dominant disorder of the central nervous system. The disease is passed from parent to progeny with a 50 percent chance of inheritance. HD is a polyglutamine disorder. Normal individuals have 7 to 34 CAG repeats in the Huntingtin (Htt) gene which encode glutamine amino acids in the Htt protein. The CAG repeats are expanded and unstable in HD patients, with repeat lengths inversely correlating with age of disease onset. Repeat lengths greater than 40 glutamines invariably cause HD, and repeats of greater than 100 glutamines typically cause juvenile onset. HD is a neurodegenerative disease characterized by movement disorder, dementia, and psychiatric disturbance which typically develops in the fourth or fifth decade of life with a disease duration of 10 to 30 years. Thirty thousand Americans have HD at an annual cost to American society of $2.5 billion with another 250,000 individuals at risk to inherit the disease. There is no cure or preventative for HD. Theories of HD pathogenesis include excitotoxicity, inappropriate apoptosis, mitochondrial dysfunction, and transcriptional dysregulation. Present treatment of HD is management of symptoms with currently marketed therapeutics. There is great interest in the development of an effective therapeutic for HD. Numerous published investigations have shown effectiveness in preclinical studies of a significant number of compounds but few if any results have translated to efficacy in humans. Human HD therapeutics based on the underlying pathogenic mechanisms of HD have great promise in preventing or stopping progression of the disease. There are indications in model systems as well as in humans that enzymatic processing or cleavage of Htt is a prerequisite for HD. One key mechanistic intervention point appears to be the cleavage of Htt by caspase 6 at amino acid 586. Studies have shown that preventing caspase 6 cleavage at Htt586 by changing the amino acids of the caspase 6 recognition site prevents development of the HD like neuropathogenesis in a HD mouse model system. Therefore, development of a caspase 6 enzymatic activity inhibitor would seem to be a advantageous therapeutic goal. However, caspase 6 processes many other important biological substrates and therefore such an inhibitor would predict significant side effects. With an innovative approach, we propose to identify and develop molecules that bind at or near Htt586 to prevent caspase 6 from binding and cleaving specifically at the Htt586 site. We call such a compound a substrate binding inhibitor molecule (SBIM). Because the amino acid sequence around the caspase 6 Htt586 cleavage site is different from other caspase 6 substrate sites, such a SBIM would be specific to the Htt586 and specific to HD. The identification of a Htt586 SBIM will validate the SBIM strategy, set the stage for development of an HD therapeutic in Phase II research and provide a potentially promising route to the development of an effective HD therapeutic. PUBLIC HEALTH RELEVANCE: Thirty thousand Americans currently have Huntington's disease (HD) at a cost to American society of over $2.5 billion per year. Huntington's disease (HD) is an inherited autosomal dominant neurodegenerate disorder that is caused by increased repeats of CAG in the Huntingtin gene. HD symptoms, characterized by movement disorder, dementia, and psychiatric disturbance, typically begin developing in the third and fourth decade of life, with a disease duration of 10 to 30 years. Currently there is no cure or treatment for HD. We are identifying a substrate binding inhibitor molecule, an innovative approach to the development of a HD therapeutic.
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Substrate Based Proteolytic Inhibitors for the Treatment of Huntington's Disease
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AFFINITY AND TRANSCRIPTASE TECHNOLOGIES
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AFFINITY AND TRANSCRIPTASE TECHNOLOGIES
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资助金额:$17.24万
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DEVELOPMENT OF AN ANTI-SEPSIS THERAPEUTIC
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资助金额:$15.02万
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FULL LENGTH REPRESENTATIONAL CDNA LIBRARY ENRICHMENT
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资助金额:$0.15万
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FULL LENGTH REPRESENTATIONAL CDNA LIBRARY ENRICHMENT
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依托单位:
HEMATOPOIETIC MAST CELL REGULATORY FACTORS
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批准号:2017768
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项目类别:
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资助金额:$10.0万
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财政年份:1997
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负责人:Frederick S Hagen
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依托单位:
FULL LENGTH REPRESENTATIONAL CDNA LIBRARY ENRICHMENT
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批准号:2796375
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资助金额:$13.19万
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财政年份:1997
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负责人:Frederick S Hagen
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CLONING OF RECEPTOR FOR THE OBESE GENE PRODUCT
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财政年份:1996
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依托单位:
HEMATOPOIETIC STEM CELL RENEWAL FACTOR
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资助金额:$36.59万
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财政年份:1996
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依托单位:
CLONING THE HEMATOPOIETIC STEM CELL RENEWAL FACTOR
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项目类别:
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资助金额:$10.0万
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财政年份:1996
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依托单位:
HEMATOPOIETIC STEM CELL RENEWAL FACTOR
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项目类别:
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资助金额:$38.41万
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财政年份:1996
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HUMAN GRANULOCYTE-MACROPHAGE COLONY STIMULATING FACTOR
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项目类别:
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负责人:Frederick S Hagen
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依托单位:
CLONING AND EXPRESSION OF HUMAN INTERLEUKIN-3
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CLONING/SEQUENCING/EXPRESSION OF HUMAN BSA LIPASE CDNA
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资助金额:$25.0万
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海外基金