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MOLECULAR ROLE OF RIGUI IN MAMMALIAN CIRCADIAN PATHWAY

MOLECULAR ROLE OF RIGUI IN MAMMALIAN CIRCADIAN PATHWAY
RIGUI 在哺乳动物昼夜节律通路中的分子作用
批准号:
2689582
负责人:
CHENG CHI LEE
金额:
$20.85万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
1998
资助国家:
美国
项目状态:
已结题
起止时间:
1998-07-15 至 2002-05-31

项目摘要

项目成果

CHENG CHI LEE的其他基金

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中文摘要
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英文摘要
DESCRIPTION: The molecular components of mammalian circadian clocks are elusive. The applicant has isolated a human gene termed RIGUI that encodes a bHLH/PAS protein 44 percent homologous to the period gene in Drosophila. The highly conserved mouse homolog (m-rigui) is expressed in a circadian pattern in the suprachiasmatic nucleus (SCN), the master regulator of circadian clocks in mammals. Circadian expression in the SCN continues in constant darkness, and a shift in the light/dark cycle evokes a proportional shift of m-rigui expression in the SCN. m-rigui transcripts also appear in a periodic pattern in Purkinje neurons, pars tuberalis, and retina, but with a timing of oscillation different from that seen in the SCN. Given the observation that the RIGUI gene has all the properties known about a core circadian component the principal investigator would like to define better its exact role in the circadian pathway. The specific aims of this study are to: a) Identify specific brain and peripheral tissue where the various circadian oscillators reside; b) Determine whether melatonin plays a role in the expression of m-rigui in the hypophyseal pars-tuberalis; c) Investigate the response of m-rigui expression in the retina and suprachiasmatic nucleus to environmental light cues; d) Make the targeted disruption of the m-rigui locus by gene knock-out methodology and determine the effect of its loss on the circadian behavior of the animals; e) Identify genes encoding proteins that interact with RIGUI using the two-hybrid system; f) Determine the genomic structure of the human RIGUI locus and delineate its promoter and cis-acting elements. Understanding genetics and molecular basis of RIGUI function could lead to new paradigms on how genes control mammalian behavior.
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NIH Director's Pioneer Award
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