Analysis of a new circadian mutant
Analysis of a new circadian mutant
批准号:
8463271
负责人:
Carla B. Green
金额:
$18.82万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-05-01 至 2016-04-30
关键词:
AddressAdvanced Sleep Phase SyndromeAffectAllelesAnimalsBehaviorBehavioralBehavioral GeneticsBiochemicalBrainCellsChemicalsCircadian RhythmsCouplingDarknessDataEnvironmentEstrous CycleExonsFamilial diseaseFemaleFibroblastsFutureGene Expression ProfileGenesGeneticGenotypeGoalsHamstersHealthHourHumanHuman PathologyKnowledgeLaboratoriesLightLiteratureMammalsMesocricetus auratusMolecularMolecular GeneticsMusMutagenesisMutateMutationNamesNatureOrganismPeriodicityPhase response curvesPhenotypePhotoperiodPhysiologic pulsePhysiologicalPhysiologyPropertyPublishingReportingRoleRunningStressStretchingStructureSystemTestingTissuesTransplantationWorkbasecircadian pacemakergenetic analysisgenome sequencinginsightmutantresearch studyresponsesexsuprachiasmatic nucleustau Proteinstau mutation
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): We have discovered a new spontaneous circadian mutation in Syrian hamsters, which confers a robust phenotype on the animals' locomotor rhythmicity. The free running period of animals homozygous for the mutation is approximately 28 hours, 4 hours per daily cycle longer than that of wild type animals. Such mutations, most produced in mice by chemical mutagenesis, have been critical in working out what we know thus far about the molecular mechanism that generates cell autonomous circadian rhythmicity in mammals, but our knowledge is far from complete and it is clear that additional unidentified genes must contribute to its function. Furthermore, because hamsters provide many advantages over mice for behavioral and physiological studies, this new mutation provides a unique opportunity for studies of the circadian clock mechanism in mammals. We propose to analyze this new mutation at 3 levels: genetic, behavioral and molecular. Genetic analysis will test our assumption, based on preliminary data, that the mutation is a single, autosomal co-dominant allele. The work in the Menaker laboratory will be focused on the behavioral phenotype and will explore the responses of wild type, heterozygous and homozygous littermates of both sexes to constant darkness, constant light, single light pulses, photoperiods with different light/dark ratis and entraining cycles with different periods, These data will address the role of the mutant gene in the circadian molecular mechanism as well as its impact on the organism's physiology. The Green lab will perform molecular and biochemical analysis of these mutants to determine whether this mutation affects the core intracellular oscillator mechanism or some system-level aspect, such as intercellular coupling. The nature of the mutation will be addressed by sequencing of the known circadian genes, and by analysis of their expression levels. This will also lay important groundwork for the eventual identification of the mutation by whole-genome sequencing. Circadian rhythms modulate much of normal physiology and behavior and circadian disruptions increase vulnerability to a variety of environmental insults. Knowledge of the underlying mechanism is essential to controlling these deleterious effects.
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财政年份:2016
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Circadian dynamics of cytoplasmic mRNA polyadenylation and deadenylation
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财政年份:2014
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Circadian regulation of mitochondrial RNA polyadenylation
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资助金额:$30.61万
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财政年份:2014
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Circadian regulation of mitochondrial RNA polyadenylation
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资助金额:$30.61万
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财政年份:2014
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Circadian regulation of mitochondrial RNA polyadenylation
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批准号:9280984
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财政年份:2014
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依托单位:
Transcriptional Architecture and Chromatin Landscape of Circadian Clocks in Aging
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批准号:8707931
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Transcriptional Architecture and Chromatin Landscape of Circadian Clocks in Aging
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依托单位:
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批准号:7413648
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Circadian post-transcriptional regulatory mechanisms
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资助金额:$28.12万
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依托单位:
海外基金