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代谢背景调节抗衰老干预对下丘脑转录反应的不同影响。

Metabolic context regulates distinct hypothalamic transcriptional responses to antiaging interventions.

机构信息

Physiology Department, Georgia Health Sciences University, Augusta, GA 30912, USA.

出版信息

Int J Endocrinol. 2012;2012:732975. doi: 10.1155/2012/732975. Epub 2012 Aug 27.

Abstract

The hypothalamus is an essential relay in the neural circuitry underlying energy metabolism that needs to continually adapt to changes in the energetic environment. The neuroendocrine control of food intake and energy expenditure is associated with, and likely dependent upon, hypothalamic plasticity. Severe disturbances in energy metabolism, such as those that occur in obesity, are therefore likely to be associated with disruption of hypothalamic transcriptomic plasticity. In this paper, we investigated the effects of two well-characterized antiaging interventions, caloric restriction and voluntary wheel running, in two distinct physiological paradigms, that is, diabetic (db/db) and nondiabetic wild-type (C57/Bl/6) animals to investigate the contextual sensitivity of hypothalamic transcriptomic responses. We found that, both quantitatively and qualitatively, caloric restriction and physical exercise were associated with distinct transcriptional signatures that differed significantly between diabetic and non-diabetic mice. This suggests that challenges to metabolic homeostasis regulate distinct hypothalamic gene sets in diabetic and non-diabetic animals. A greater understanding of how genetic background contributes to hypothalamic response mechanisms could pave the way for the development of more nuanced therapeutics for the treatment of metabolic disorders that occur in diverse physiological backgrounds.

摘要

下丘脑是能量代谢神经回路中的一个重要中继站,需要不断适应能量环境的变化。食物摄入和能量消耗的神经内分泌控制与下丘脑的可塑性有关,并且可能依赖于它。因此,能量代谢的严重紊乱,如肥胖症中发生的紊乱,很可能与下丘脑转录组可塑性的破坏有关。在本文中,我们研究了两种经过充分研究的抗衰老干预措施,即热量限制和自愿轮跑,在两种不同的生理范式(即糖尿病(db/db)和非糖尿病野生型(C57/Bl/6)动物)中的作用,以研究下丘脑转录组反应的上下文敏感性。我们发现,无论是在数量上还是在质量上,热量限制和体育锻炼都与糖尿病和非糖尿病小鼠之间存在显著差异的独特转录特征相关。这表明代谢稳态的挑战会调节糖尿病和非糖尿病动物中不同的下丘脑基因集。更好地了解遗传背景如何影响下丘脑反应机制,可以为治疗在不同生理背景下发生的代谢紊乱的更精细治疗方法铺平道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2731/3427989/d365fa1e2220/IJE2012-732975.001.jpg

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