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代谢的转录调控

Transcriptional regulation of metabolism.

作者信息

Desvergne Béatrice, Michalik Liliane, Wahli Walter

机构信息

Center for Integrative Genomics, National Centre of Competence in Research Frontiers in Genetics, University of Lausanne, Lausanne, Switzerland.

出版信息

Physiol Rev. 2006 Apr;86(2):465-514. doi: 10.1152/physrev.00025.2005.

Abstract

Our understanding of metabolism is undergoing a dramatic shift. Indeed, the efforts made towards elucidating the mechanisms controlling the major regulatory pathways are now being rewarded. At the molecular level, the crucial role of transcription factors is particularly well-illustrated by the link between alterations of their functions and the occurrence of major metabolic diseases. In addition, the possibility of manipulating the ligand-dependent activity of some of these transcription factors makes them attractive as therapeutic targets. The aim of this review is to summarize recent knowledge on the transcriptional control of metabolic homeostasis. We first review data on the transcriptional regulation of the intermediary metabolism, i.e., glucose, amino acid, lipid, and cholesterol metabolism. Then, we analyze how transcription factors integrate signals from various pathways to ensure homeostasis. One example of this coordination is the daily adaptation to the circadian fasting and feeding rhythm. This section also discusses the dysregulations causing the metabolic syndrome, which reveals the intricate nature of glucose and lipid metabolism and the role of the transcription factor PPARgamma in orchestrating this association. Finally, we discuss the molecular mechanisms underlying metabolic regulations, which provide new opportunities for treating complex metabolic disorders.

摘要

我们对新陈代谢的理解正在经历巨大转变。事实上,为阐明控制主要调节途径的机制所做的努力如今正得到回报。在分子水平上,转录因子的关键作用在其功能改变与主要代谢疾病发生之间的联系中得到了特别充分的体现。此外,操纵其中一些转录因子的配体依赖性活性的可能性使其成为有吸引力的治疗靶点。本综述的目的是总结关于代谢稳态转录调控的最新知识。我们首先回顾关于中间代谢(即葡萄糖、氨基酸、脂质和胆固醇代谢)转录调控的数据。然后,我们分析转录因子如何整合来自各种途径的信号以确保稳态。这种协调的一个例子是日常对昼夜禁食和进食节律的适应。本节还讨论了导致代谢综合征的失调情况,这揭示了葡萄糖和脂质代谢的复杂性质以及转录因子PPARγ在协调这种关联中的作用。最后,我们讨论代谢调节的分子机制,这为治疗复杂的代谢紊乱提供了新机会。

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