The role of serotonin in dietary protein perception and diet-dependent longevity
The role of serotonin in dietary protein perception and diet-dependent longevity
批准号:
8889495
负责人:
Jennifer Ro
金额:
$2.87万
依托单位国家:
美国
项目类别:
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-07-01 至 2016-03-31
关键词:
AccountingAdultAgeAgingAging-Related ProcessAmino AcidsBehavioralBiological AssayBiologyCaenorhabditis elegansCarbohydratesCellsClinicalClinical ResearchComplexDataDecision MakingDevicesDietDietary ProteinsDisease ProgressionDissectionDrosophila genusDrosophila melanogasterElderlyEnergy IntakeEnvironmentEquilibriumExposure toFeeding behaviorsFoodFosteringGenesGeneticGoalsHealthHomeostasisHumanIntakeInterventionInvertebratesKnowledgeLeadLife ExtensionLinkLongevityMacronutrients NutritionMalnutritionMeasuresMediatingModelingMolecularNematodaNeuraxisNeurobiologyNeuroendocrine CellNeurologicNeuronsNeurosciencesNeurotransmittersNutrientOdorsOrganismOutputPerceptionPeripheralPhysiologicalPhysiological ProcessesPhysiologyPlayPopulationPositioning AttributeProcessProtein DeficiencyProteinsPublishingRegulationResearchRiskRoleSensorySerotoninSerotonin Receptors 5-HT2Signal PathwaySignal TransductionSmell PerceptionSourceSystemTaste PerceptionTaxonTestingTimeTissuesWorkYeastsage effectaging brainbasedietary restrictionfeedingflyimprovedinsightmutantneural circuitnovelpreferencepublic health relevancereceptorreproductiveresearch studyresponseserotonin receptortool
中文摘要
描述(由申请人提供):已知暴露于无营养不良或饮食限制(DR)的低营养饮食可以随着时间的推移延缓生理和行为衰退的发生和进展。膳食蛋白质被认为是DR延长寿命的关键宏量营养素,有趣的是,在无脊椎动物模型果蝇黑腹果蝇中进行的研究表明,暴露在主要蛋白质来源(果蝇的膳食酵母)的气味中,足以限制DR对寿命的益处。这项研究唤起了一种令人兴奋的可能性,即膳食蛋白质的感官知觉在衰老的调节中起作用。然而,关于感觉信息是如何被处理的,以及它是如何引发生理上的广泛变化的,包括衰老,仍然是初级的。本研究的主要目的是建立膳食蛋白质感知的神经感觉机制,并评估其在dr延长生命中的作用。我们的初步数据和最近发表的结果表明,血清素是一种重要的神经递质,可能是区分食物中蛋白质的关键角色。为了阐明膳食蛋白质被感知的具体机制以及相关感觉信号在中枢神经系统(CNS)中的表达方式,我们将利用果蝇研究中可用的强大的遗传和神经科学工具对血清素信号通路进行仔细的解剖。然后,我们将通过揭示介导膳食蛋白诱发的血清素信号的神经内分泌细胞,进一步了解膳食蛋白的感官知觉如何协调全球生理变化。我们从这些实验中收集的全面知识将使我们处于独特的强势地位,以测试饮食蛋白质感知与饮食通过血清素信号介导的寿命延长之间的功能联系。我们提出的研究结果将为基础生物学和临床老年医学研究带来新的见解。首先,在果蝇中建立中枢神经系统功能和饮食依赖寿命之间的联系将为在更复杂的生物体中研究类似机制提供一个基本框架。其次,了解营养信号是如何被感知的,以及这些信息是如何被处理的,将促进针对营养摄入或年龄相关疾病进展的神经调节的临床研究。
英文摘要
DESCRIPTION (provided by applicant): Exposure to a reduced-nutrient diet without malnutrition, or dietary restriction (DR), is known to delay the onset and progression of physiological and behavioral decline over time. Dietary protein has been implicated as a key macronutrient that mediates life-extension by DR. Interestingly, research done in an invertebrate model, Drosophila melanogaster, has revealed that exposure to the smell of a major protein source, dietary yeast in the case of Drosophila, is sufficient to limit the benefits of DR on lifespan. This study evoked an exciting possibility that sensory perception of dietary protein plays a role in the modulation of aging. However, knowledge about how sensory information is processed or how it initiates widespread changes in physiology, including aging, remains rudimentary. The major objectives of this proposal are to establish neurosensory mechanisms of dietary protein perception and to evaluate its role in life-extension by DR. Our preliminary data, together with recently published results, suggested that serotonin, an important neurotransmitter, may be a key player in distinguishing protein in a food. To elucidate the specific mechanisms underlying how dietary proteins are perceived and how the relevant sensory signals are represented in the central nervous system (CNS), we will undertake careful dissection of serotonin signaling pathways using powerful genetic and neuroscience tools available in Drosophila research. We will then advance our knowledge in how sensory perception of dietary protein orchestrates global physiological changes by uncovering neuroendocrine cells that mediate dietary protein-evoked serotonin signaling. Comprehensive knowledge we gathered from these experiments will put us in a uniquely strong position to test a functional link between perception of dietary protein and diet-mediated longevity extension through serotonin signaling. The findings from our proposed studies will bring new insights into basic biology and clinical geriatric research. First, establishing connectivity between the functio of the CNS and diet-dependent longevity in fruit flies will provide a basic framework to examine similar mechanisms in more complex organisms. Second, understanding how nutrient signals are perceived and how this information is processed will foster clinical research to target neurological regulation of nutrient intake or age-associated disease progression.
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会议论文
Characterization of organ wasting/cachexia mechanisms
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批准号:9257871
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项目类别:
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资助金额:$3.68万
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财政年份:2017
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负责人:Jennifer Ro
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依托单位:
The role of serotonin in dietary protein perception and diet-dependent longevity
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批准号:8714997
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项目类别:
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资助金额:$3.37万
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财政年份:2014
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负责人:Jennifer Ro
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依托单位:
海外基金