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刺猬蛋白通过甲状腺激素脱碘酶调节甲状腺激素作用。

Hedgehog-mediated regulation of thyroid hormone action through iodothyronine deiodinases.

机构信息

University of Naples Federico II, Department of Molecular and Clinical Endocrinology and Oncology, Naples, Italy.

出版信息

Expert Opin Ther Targets. 2011 Apr;15(4):493-504. doi: 10.1517/14728222.2011.553607. Epub 2011 Jan 25.

DOI:10.1517/14728222.2011.553607
PMID:21261564
Abstract

INTRODUCTION

The three iodothyronine deiodinases catalyze the metabolic pathway that removes one iodine residue from the T4 molecule, thus producing either the active T3 or the inactive metabolite rT3. Hence, deiodination is a potent mechanism by which to modulate thyroid hormone (TH) action at cellular level, thereby allowing cells to customize their own T3 availability, both spatially and temporally, irrespective of TH serum concentrations. Sonic hedgehog (Hh) regulates patterning and growth of a remarkable variety of tissues throughout embryogenesis. Its constitutive activation is associated with cancer development.

AREAS COVERED

Recent evidences from two independent systems implicate the Hh signaling pathway in regulation of TH action via modulation of deiodinase expression. Interestingly, many critical developmental events, for example, amphibian metamorphosis, are tightly regulated by the TH and Hh signaling pathways. This review provides an overview of recent data referring to the intricate regulation of deiodinase activity and intracellular TH action by the Hh pathway.

EXPERT OPINION

This functional cross-talk provides a paradigm for interaction between two key signaling pathways critical during development and neoplastic transformation. This interaction may be relevant in other tissues and situations in which the two signaling pathways participate. Deciphering these mechanisms constitutes an exciting field for future research.

摘要

简介

三种碘甲状腺原氨酸脱碘酶催化将一个碘残基从 T4 分子中去除的代谢途径,从而产生活性 T3 或无活性代谢物 rT3。因此,脱碘是一种调节甲状腺激素 (TH) 在细胞水平上作用的有效机制,从而使细胞能够根据需要在空间和时间上定制自身的 T3 可用性,而不受 TH 血清浓度的影响。声波刺猬 (Hh) 调节胚胎发生过程中各种组织的模式和生长。其组成性激活与癌症发展有关。

涵盖领域

来自两个独立系统的最新证据表明,Hh 信号通路通过调节脱碘酶表达来调节 TH 作用。有趣的是,许多关键的发育事件,例如两栖动物变态,都受到 TH 和 Hh 信号通路的严格调节。这篇综述概述了最近的数据,这些数据涉及 Hh 途径对脱碘酶活性和细胞内 TH 作用的复杂调节。

专家意见

这种功能串扰为两个关键信号通路在发育和肿瘤转化过程中的相互作用提供了范例。这种相互作用可能与两个信号通路参与的其他组织和情况有关。破译这些机制是未来研究的一个令人兴奋的领域。

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