GSK3 regulation of suprachiasmatic neuronal excitability and light entrainment
GSK3 regulation of suprachiasmatic neuronal excitability and light entrainment
批准号:
8644469
负责人:
Jodi Renee Paul
金额:
$3.24万
依托单位国家:
美国
项目类别:
财政年份:
2013
资助国家:
美国
项目状态:
已结题
起止时间:
2013-09-01 至 2015-08-31
关键词:
Action PotentialsAgingAlzheimer&aposs DiseaseAnimal ModelAreaAttenuatedBehaviorBehavioralBiological ClocksBioluminescenceBrainCellsCharacteristicsChronicCircadian RhythmsClinicalCognitionDiseaseElectrophysiology (science)EnhancersEnvironmentExhibitsFellowshipFragile X SyndromeFrequenciesFutureGenerationsGlycogen Synthase Kinase 3GoalsHourHypothalamic structureImmunohistochemistryIon ChannelLeadLightMammalsMeasuresMediatingMembraneMembrane PotentialsMental disordersMolecularMusN-MethylaspartateNerve DegenerationNeurodegenerative DisordersNeuronsNeurosciencesParkinson DiseasePatientsPatternPhasePhosphorylationPhysiologic pulsePhysiological ProcessesPhysiologyPropertyProtein-Serine-Threonine KinasesPublishingRegulationResearchResistanceRestRoleSleepSleep Wake CycleSliceSodiumSodium ChannelStimulusSystemTechniquesTestingTimeTrainingWorkWritingcareercircadian pacemakerexperienceinhibitor/antagonistinsightlight entrainmentmouse modelnervous system disorderneuronal excitabilityneurophysiologynovelprogramspublic health relevanceresearch studyresponsesuprachiasmatic nucleustreatment strategyvoltage
中文摘要
描述(由申请人提供):昼夜节律是行为和生理过程中大约24小时的周期,例如睡眠/觉醒周期和认知。在哺乳动物中,这些节奏是内源性产生的,并通过主要的昼夜节律起搏器,视交叉上核(SCN)携带到外部光周期。SCN神经元的一个标志性特征是自发动作电位频率的每日节律,白天活动高,晚上活动低。这些SCN放电率模式对于维持稳健、巩固的行为节律至关重要,SCN神经元活动的持续变化涉及光诱导的行为转变。许多离子成分的基础上的日常和光响应的SCN生理变化已被描述,然而,控制这些电流的表达的机制是未知的。糖原合成酶激酶3(GSK 3)是一种丝氨酸-苏氨酸激酶,其是哺乳动物昼夜节律的新兴调节剂,并且已经涉及多种神经、神经变性和精神疾病。在SCN中,GSK 3表现出每日的活动节律。我们最近的工作表明,慢性GSK 3激活消除了SCN活性的典型日/夜差异,夜间具有高的“日”样活性,突出了GSK 3是一种以前未探索的SCN神经生理学调节剂。该提案的总体目标是研究GSK 3活性在调节SCN神经元兴奋性和光(光)夹带的昼夜节律系统中的作用,使用昼夜节律行为分析,免疫组织化学,实时生物发光和全细胞电生理学,在存在慢性GSK 3激活的情况下,并遵循GSK 3的药理学抑制。具体目的将检验以下假设:1)GSK 3活性通过调节持续钠电流调节SCN神经生理学兴奋性,以及2)GSK 3介导光诱导的SCN兴奋性和相位重置。本文提出的研究结果将扩展目前对GSK 3参与昼夜节律系统的理解,并为控制SCN膜生理学的机制提供新的见解。此外,由于GSK 3与许多临床疾病有关,这些疾病也表现出昼夜节律紊乱,因此更好地了解GSK 3在昼夜节律调节中的作用可能会导致未来这些疾病的新治疗策略。
英文摘要
DESCRIPTION (provided by applicant): Circadian rhythms are approximately 24-hour cycles in behavioral and physiological processes, such as sleep/wake cycles and cognition. In mammals, these rhythms are endogenously generated and entrained to the external light cycle by the primary circadian pacemaker, the suprachiasmatic nucleus (SCN). A hallmark characteristic of SCN neurons is the daily rhythm in the spontaneous action potential frequency, with high activity during the day and low activity at night. These SCN firing rate patterns are critical for maintaining robust, consolidated behavioral rhythms, and persistent changes in SCN neuronal activity are involved light-induced behavioral shifts. Many of the ionic components underlying daily and light-responsive changes in SCN physiology have been described; however, the mechanism controlling expression of these currents is not known. Glycogen synthase kinase 3 (GSK3) is a serine-threonine kinase that is an emerging regulator of mammalian circadian rhythms and has been implicated in a variety of neurological, neurodegenerative, and psychiatric disorders. In the SCN, GSK3 exhibits daily rhythms in activity. Our recent work has shown that chronic GSK3 activation eliminates the typical day/night differences in SCN activity, with high, "day"-like activity at night, highlighting GSK3 a a previously unexplored regulator of SCN neurophysiology. The overall goal of this proposal is to examine the role of GSK3 activity in regulating SCN neuronal excitability and photic (light) entrainment of the circadian system, using circadian behavioral analysis, immunohistochemistry, real-time bioluminescence, and whole-cell electrophysiology in the presence of chronic GSK3 activation and following pharmacological inhibition of GSK3. The specific aims will test the hypotheses that: 1) GSK3 activity regulates SCN neurophysiological excitability through modulation of the persistent sodium current and 2) GSK3 mediates light- induced SCN excitability and phase-resetting. The results of the studies proposed here will expand upon the current understanding of GSK3's involvement in the circadian system, and provide novel insight into the mechanism controlling SCN membrane physiology. Furthermore, Because GSK3 has been implicated in numerous clinical disorders which also exhibit circadian disruption, a better understanding of the role of GSK3 in circadian regulation could lead to new treatment strategies for these disorders in the future.
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GSK3 regulation of suprachiasmatic neuronal excitability and light entrainment
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批准号:8758666
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项目类别:
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资助金额:$2.98万
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财政年份:2013
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负责人:Jodi Renee Paul
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依托单位:
海外基金