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血管中的 PPAR-RXR 转录复合物:能量平衡。

The PPAR-RXR transcriptional complex in the vasculature: energy in the balance.

机构信息

Cardiovascular Medicine, Brigham and Women’s Hospital, Boston, MA, USA.

出版信息

Circ Res. 2011 Apr 15;108(8):1002-16. doi: 10.1161/CIRCRESAHA.110.226860.

Abstract

The peroxisome proliferator-activated receptors (PPARs) and the retinoid X receptors (RXRs) are ligand-activated transcription factors that coordinately regulate gene expression. This PPAR-RXR transcriptional complex plays a critical role in energy balance, including triglyceride metabolism, fatty acid handling and storage, and glucose homeostasis: processes whose dysregulation characterize obesity, diabetes, and atherosclerosis. PPARs and RXRs are also involved directly in inflammatory and vascular responses in endothelial and vascular smooth muscle cells. New insights into fundamental aspects of PPAR and RXR biology, and their actions in the vasculature, continue to appear. Although RXRs are obligate heterodimeric partners for PPAR action, the part that RXRs, and their endogenous retinoid mediators, exert in the vessel wall is less well understood. Biological insights into PPAR-RXRs may help inform interpretation of clinical trials with synthetic PPAR agonists and prospects for future PPAR therapeutics. Importantly, the extensive data establishing a key role for PPARs and RXRs in energy balance, inflammation, and vascular biology stands separately from the clinical experience with any given synthetic PPAR agonist. Both the basic science data and the clinical experience with PPAR agonists identify the need to better understand these important transcriptional regulators.

摘要

过氧化物酶体增殖物激活受体 (PPARs) 和视黄酸 X 受体 (RXRs) 是配体激活的转录因子,它们协同调节基因表达。这种 PPAR-RXR 转录复合物在能量平衡中起着关键作用,包括甘油三酯代谢、脂肪酸处理和储存以及葡萄糖稳态:这些过程的失调特征是肥胖、糖尿病和动脉粥样硬化。PPARs 和 RXRs 也直接参与内皮细胞和血管平滑肌细胞中的炎症和血管反应。关于 PPAR 和 RXR 生物学的基本方面及其在血管中的作用的新见解不断出现。尽管 RXRs 是 PPAR 作用的必需异二聚体伴侣,但 RXRs 及其内源性视黄酸介质在血管壁中的作用还不太清楚。对 PPAR-RXRs 的生物学认识可能有助于解释合成 PPAR 激动剂的临床试验,并为未来的 PPAR 治疗提供前景。重要的是,大量数据确立了 PPARs 和 RXRs 在能量平衡、炎症和血管生物学中的关键作用,与任何给定的合成 PPAR 激动剂的临床经验分开。PPAR 激动剂的基础科学数据和临床经验都表明需要更好地了解这些重要的转录调节剂。

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