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线粒体中的糖皮质激素受体及其他核转录因子及其可能的功能。

Glucocorticoid receptors and other nuclear transcription factors in mitochondria and possible functions.

作者信息

Psarra Anna-Maria G, Sekeris Constantine E

机构信息

Biomedical Research Foundation, Academy of Athens, Center for Basic Research, 4 Soranou Efesiou, 11527, Athens, Greece.

出版信息

Biochim Biophys Acta. 2009 May;1787(5):431-6. doi: 10.1016/j.bbabio.2008.11.011. Epub 2008 Dec 6.

Abstract

The central role of mitochondria in basic physiological processes has rendered this organelle a receiver and integrator of multiple regulatory signals. Steroid and thyroid hormones are major modulators of mitochondrial functions and the question arises as to how these molecules act at the molecular level. The detection in mitochondria of steroid and thyroid hormone receptors suggested their direct action on mitochondrial functions within the context of the organelle. The interaction of the receptors with regulatory elements of the mitochondrial genome and the activation of gene transcription underlies the hormonal stimulation of energy yield. Glucocorticoid activation of hepatocyte RNA synthesis is one of the experimental models exploited in this respect. Furthermore, the interaction of the receptors with apoptotic/antiapoptotic factors is possibly associated with the survival-death effects of the hormones. In addition to the steroid/thyroid hormone receptors, several other receptors belonging to the superfamily of nuclear receptors, as well as transcription factors with well defined nuclear actions, have been found in mitochondria. How these molecules act and interact and how they can affect the broad spectrum of mitochondrial functions is an emerging exciting field.

摘要

线粒体在基本生理过程中的核心作用使其成为多种调节信号的接收者和整合者。类固醇激素和甲状腺激素是线粒体功能的主要调节因子,于是问题就出现了,即这些分子在分子水平上是如何起作用的。在 mitochondria 中检测到类固醇激素和甲状腺激素受体,表明它们在细胞器的背景下对线粒体功能有直接作用。受体与线粒体基因组调节元件的相互作用以及基因转录的激活是激素刺激能量产生的基础。糖皮质激素对肝细胞 RNA 合成的激活是在这方面所利用的实验模型之一。此外,受体与凋亡/抗凋亡因子的相互作用可能与激素的生存-死亡效应有关。除了类固醇/甲状腺激素受体外,在 mitochondria 中还发现了属于核受体超家族的其他几种受体,以及具有明确核作用的转录因子。这些分子如何起作用和相互作用,以及它们如何影响广泛的线粒体功能,是一个新兴的令人兴奋的领域。

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