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甲状腺激素与线粒体:衍生物和类似物简述。

Thyroid hormones and mitochondria: with a brief look at derivatives and analogues.

机构信息

Dipartimento di Scienze e Tecnologie, Università degli Studi del Sannio, Via Port'Arsa 11, 82100 Benevento, Italy.

出版信息

Mol Cell Endocrinol. 2013 Oct 15;379(1-2):51-61. doi: 10.1016/j.mce.2013.06.006. Epub 2013 Jun 13.

DOI:10.1016/j.mce.2013.06.006
PMID:23769708
Abstract

Thyroid hormones (TH) have a multiplicity of effects. Early in life, they mainly affect development and differentiation, while later on they have particularly important influences over metabolic processes in almost all tissues. It is now quite widely accepted that thyroid hormones have two types of effects on mitochondria. The first is a rapid stimulation of respiration, which is evident within minutes/hours after hormone treatment, and it is probable that extranuclear/non-genomic mechanisms underlie this effect. The second response occurs one to several days after hormone treatment, and leads to mitochondrial biogenesis and to a change in mitochondrial mass. The hormone signal for the second response involves both T3-responsive nuclear genes and a direct action of T3 at mitochondrial binding sites. T3, by binding to a specific mitochondrial receptor and affecting the transcription apparatus, may thus act in a coordinated manner with the T3 nuclear pathway to regulate mitochondrial biogenesis and turnover. Transcription factors, coactivators, corepressors, signaling pathways and, perhaps, all play roles in these mechanisms. This review article focuses chiefly on TH, but also looks briefly at some analogues and derivatives (on which the data is still somewhat patchy). We summarize data obtained recently and in the past to try to obtain an updated picture of the current research position concerning the metabolic effects of TH, with particular emphasis on those exerted via mitochondria.

摘要

甲状腺激素 (TH) 具有多种作用。在生命早期,它们主要影响发育和分化,而在生命后期,它们对几乎所有组织的代谢过程都有特别重要的影响。现在人们已经相当普遍地接受了甲状腺激素对线粒体有两种类型的影响。第一种是对呼吸的快速刺激,这种刺激在激素治疗后几分钟/几小时内就很明显,这种效应可能是由核外/非基因组机制引起的。第二种反应发生在激素治疗后一到几天,导致线粒体生物发生和线粒体质量的变化。第二种反应的激素信号涉及 T3 反应性核基因和 T3 在线粒体结合位点的直接作用。T3 通过与特定的线粒体受体结合并影响转录装置,可能以协调的方式与 T3 核途径一起作用,从而调节线粒体生物发生和周转。转录因子、共激活因子、共抑制因子、信号通路,也许还有所有这些都在这些机制中发挥作用。这篇综述文章主要关注 TH,但也简要地看了一些类似物和衍生物(关于这些类似物和衍生物的数据仍然有些零散)。我们总结了最近和过去获得的数据,试图获得关于 TH 的代谢作用的最新研究状况的图片,特别强调通过线粒体发挥的作用。

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