A Carboxypeptidase in the Regulation of Hypothalamic Circuitry
A Carboxypeptidase in the Regulation of Hypothalamic Circuitry
批准号:
8055409
负责人:
Sabrina Diano
金额:
$34.0万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-04-05 至 2014-01-31
关键词:
AblationAnimalsAreaBrainCarboxypeptidaseCarboxypeptidase ACell NucleusCellsDataDevelopmentDietDrug Delivery SystemsEatingEnergy MetabolismEnzymesFatty acid glycerol estersFood EnergyFunctional disorderGenesGoalsHypothalamic structureKnockout MiceLateral Hypothalamic AreaLeptinLightMedial Dorsal NucleusMessenger RNAMetabolicMetabolic DiseasesMetabolismMorbidity - disease rateMusNeuraxisNeuronsNon-Insulin-Dependent Diabetes MellitusObese MiceObesityPatternPeptidesPhenotypePhysiologicalPlayPopulationPresynaptic TerminalsPro-OpiomelanocortinProcessProtease InhibitorProteinsRegulationRegulatory ElementResistanceRoleSignal TransductionSiteSocietiesSystemWild Type Mousealpha-Melanocyte stimulating hormoneanorexigenic peptideenergy balanceextracellularghrelinmortalitynovelparaventricular nucleuspublic health relevancesmall molecule
中文摘要
描述(由申请人提供):肥胖和相关的代谢功能障碍,如2型糖尿病,已经成为发达社会发病率和死亡率的主要原因。肥胖和2型糖尿病的发展可能由中枢神经系统机制触发或消除。下丘脑黑素皮质素系统在调节能量平衡中起着重要作用。下丘脑中主要的厌氧肽是α -黑色素细胞刺激激素(1-MSH),它是促鸦片黑素皮质素(POMC)基因的产物。释放后,1-MSH迅速降解,这一过程可能在黑素皮质素信号传导中发挥重要作用。我们已经确定了一种羧化酶,脯氨酸羧肽酶(PRCP),它在下丘脑中表达,并启动细胞外1-MSH的降解和失活。我们发现PRCP在向轴突末端释放1-MSH的区域发送传出信号的神经元群中表达。我们证实了1-MSH1-13是PRCP的底物,而PRCP降解的1-MSH (1-MSH1-12)没有神经活性。在野生型和肥胖动物中,外周或中心施用小分子蛋白酶抑制剂抑制PRCP活性可减少食物摄入量。此外,PRCP基因的全身或外侧下丘脑区域特异性消融导致对饮食性肥胖的抵抗。综上所述,这些观察结果推动了该提议的中心假设,即PRCP是黑素皮质素细胞下游黑素皮质素信号传导的重要调节剂。我们认为,PRCP活性升高会促进代谢功能障碍,包括肥胖和2型糖尿病。为了进一步了解PRCP在代谢调节中的作用,我们提出了以下具体目标:具体目标1)我们将研究瘦小鼠和肥胖小鼠的PRCP和黑素皮质素肽水平。我们将研究瘦素和胃饥饿素对PRCP的影响。我们将研究PRCP在肥胖和2型糖尿病发展中的作用。上述具体目标的实现将揭示能量代谢调节中的一个新的中央调控元素。这些研究的成功完成将为代谢紊乱提供新的药物靶点,包括肥胖和2型糖尿病。
英文摘要
DESCRIPTION (provided by applicant): Obesity and related metabolic dysfunctions, such as type 2 diabetes, have emerged as a leading cause of morbidity and mortality in developed societies. The development of obesity and type 2 diabetes may be triggered or abrogated by central nervous system mechanisms. The hypothalamic melanocortin system plays an important role in the regulation of energy balance. The major anorexigenic peptide in the hypothalamus is alpha-melanocyte-stimulating hormone (1-MSH), the product of the pro-opiomelanocortin (POMC) gene. When released, 1-MSH is rapidly degraded, a process that is likely to play an important role in melanocortin signaling. We have identified a carboxylase enzyme, prolyl carboxypeptidase (PRCP), which is expressed in the hypothalamus and initiates degradation and inactivation of extracellular 1-MSH. We found that PRCP is expressed in neuronal populations that send efferents to areas where 1-MSH is released from axon terminals. We confirmed that 1-MSH1-13 is a substrate of PRCP, and PRCP-degraded 1-MSH (1-MSH1-12) is not neuroactive. Inhibition of PRCP activity by small molecule protease inhibitors administered peripherally or centrally decreased food intake in wild type as well as obese animals. In addition, whole body or lateral hypothalamic area-specific ablation of the PRCP gene resulted in resistance to diet-induced obesity. Taken together, these observations gave impetus to the central hypothesis of this proposal that PRCP is an important regulator of melanocortin signaling downstream of the melanocortin cells. We suggest that elevated PRCP activity promotes metabolic dysfunctions, including obesity and type 2 diabetes. To further our understanding of the role of PRCP in metabolic regulation, we propose the following specific aims: Specific Aim 1) we will study PRCP and melanocortin peptides levels in lean and obese mice. Specific Aim 2) we will study leptin and ghrelin effects on PRCP. Specific Aim 3) We will study PRCP in the development of obesity and type 2 diabetes. The execution of the above specific aims will shed light on a novel central regulatory element in the regulation of energy metabolism. Successful completion of these studies will deliver new drug targets for metabolic disorders, including obesity and type 2 diabetes.
PUBLIC HEALTH RELEVANCE: This proposal aims to investigate the role of a hypothalamic carboxylase in the regulation of brain circuits that control food intake and energy expenditure. Successful completion of these studies will deliver new drug targets for metabolic disorders, including obesity and type 2 diabetes.
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海外基金