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中枢神经系统燃料感知在能量和葡萄糖调节中的作用。

The role of CNS fuel sensing in energy and glucose regulation.

作者信息

Cota Daniela, Proulx Karine, Seeley Randy J

机构信息

Department of Psychiatry, Genome Research Institute, University of Cincinnati, Cincinnati, Ohio 45237, USA.

出版信息

Gastroenterology. 2007 May;132(6):2158-68. doi: 10.1053/j.gastro.2007.03.049.

Abstract

Individual cells must carefully regulate their energy flux to ensure nutrient levels are adequate to maintain normal cellular activity. The same principle holds in multicellular organisms. Thus, for mammals to perform necessary physiological functions, sufficient nutrients need to be available. It is more complex, however, to understand how the energy status of different cells impacts on the overall energy balance of the entire organism. We propose that the central nervous system is the critical organ for the coordination of intracellular metabolic processes that are essential to guarantee energy homeostasis at the organismal level. In particular, we suggest that in specific hypothalamic neurons, evolutionarily conserved fuel sensors, such as adenosine monophosphate-activated protein kinase and mammalian target of rapamycin (mTOR), integrate sensory input from nutrients, including those derived from recently ingested food or those that are stored in adipose tissue, to regulate effector pathways responsible for fuel intake and utilization. The corollary to this hypothesis is that dysregulation of these fuel-sensing mechanisms in the brain may contribute to metabolic dysregulation underlying diseases, such as obesity and type 2 diabetes.

摘要

单个细胞必须仔细调节其能量通量,以确保营养水平足以维持正常的细胞活动。这一原则同样适用于多细胞生物。因此,对于哺乳动物来说,要执行必要的生理功能,就需要有足够的营养物质。然而,要理解不同细胞的能量状态如何影响整个生物体的整体能量平衡则更为复杂。我们认为,中枢神经系统是协调细胞内代谢过程的关键器官,而这些过程对于保证机体水平的能量稳态至关重要。特别是,我们认为在特定的下丘脑神经元中,进化上保守的能量传感器,如单磷酸腺苷激活的蛋白激酶和雷帕霉素哺乳动物靶蛋白(mTOR),整合来自营养物质的感觉输入,包括那些来自最近摄入食物的营养物质或储存在脂肪组织中的营养物质,以调节负责能量摄入和利用的效应器途径。这一假设的必然结果是,大脑中这些能量感应机制的失调可能导致肥胖和2型糖尿病等疾病背后的代谢失调。

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