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EGF 受体在神经代谢衰老中的核心作用。

Central role of the EGF receptor in neurometabolic aging.

机构信息

Receptor Pharmacology Unit, National Institute on Aging, Baltimore, MD 21224, USA.

出版信息

Int J Endocrinol. 2012;2012:739428. doi: 10.1155/2012/739428. Epub 2012 Jun 17.

Abstract

A strong connection between neuronal and metabolic health has been revealed in recent years. It appears that both normal and pathophysiological aging, as well as neurodegenerative disorders, are all profoundly influenced by this "neurometabolic" interface, that is, communication between the brain and metabolic organs. An important aspect of this "neurometabolic" axis that needs to be investigated involves an elucidation of molecular factors that knit these two functional signaling domains, neuronal and metabolic, together. This paper attempts to identify and discuss a potential keystone signaling factor in this "neurometabolic" axis, that is, the epidermal growth factor receptor (EGFR). The EGFR has been previously demonstrated to act as a signaling nexus for many ligand signaling modalities and cellular stressors, for example, radiation and oxidative radicals, linked to aging and degeneration. The EGFR is expressed in a wide variety of cells/tissues that pertain to the coordinated regulation of neurometabolic activity. EGFR signaling has been highlighted directly or indirectly in a spectrum of neurometabolic conditions, for example, metabolic syndrome, diabetes, Alzheimer's disease, cancer, and cardiorespiratory function. Understanding the positioning of the EGFR within the neurometabolic domain will enhance our appreciation of the ability of this receptor system to underpin highly complex physiological paradigms such as aging and neurodegeneration.

摘要

近年来,人们发现神经元和代谢健康之间存在着紧密的联系。似乎正常和病理生理衰老以及神经退行性疾病都受到这种“神经代谢”界面的深刻影响,即大脑和代谢器官之间的通讯。这个“神经代谢”轴的一个重要方面需要研究的是阐明将这两个功能信号域(神经元和代谢)联系在一起的分子因素。本文试图确定和讨论这个“神经代谢”轴中的一个潜在关键信号因子,即表皮生长因子受体(EGFR)。先前已经证明,EGFR 作为许多配体信号模式和与衰老和退化相关的细胞应激源(例如辐射和氧化自由基)的信号枢纽发挥作用。EGFR 在与协调神经元代谢活动相关的多种细胞/组织中表达。EGFR 信号直接或间接地在一系列神经代谢疾病中得到强调,例如代谢综合征、糖尿病、阿尔茨海默病、癌症和心肺功能。了解 EGFR 在神经代谢领域中的定位将增强我们对这个受体系统在支撑衰老和神经退行性变等高度复杂生理范例中的能力的理解。

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