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甲状腺激素受体在发育过程中对类固醇受体辅激活因子-3的组织和基因特异性募集。

Tissue- and gene-specific recruitment of steroid receptor coactivator-3 by thyroid hormone receptor during development.

作者信息

Paul Bindu D, Buchholz Daniel R, Fu Liezhen, Shi Yun-Bo

机构信息

Laboratory of Gene Regulation and Development, NICHD, National Institutes of Health, Bethesda, Maryland 20892, USA.

出版信息

J Biol Chem. 2005 Jul 22;280(29):27165-72. doi: 10.1074/jbc.M503999200. Epub 2005 May 18.

Abstract

Numerous coactivators that bind nuclear hormone receptors have been isolated and characterized in vitro. Relatively few studies have addressed the developmental roles of these cofactors in vivo. By using the total dependence of amphibian metamorphosis on thyroid hormone (T3) as a model, we have investigated the role of steroid receptor coactivator 3 (SRC3) in gene activation by thyroid hormone receptor (TR) in vivo. First, expression analysis showed that SRC3 was expressed in all tadpole organs analyzed. In addition, during natural as well as T3-induced metamorphosis, SRC3 was up-regulated in both the tail and intestine, two organs that undergo extensive transformations during metamorphosis and the focus of the current study. We then performed chromatin immunoprecipitation assays to investigate whether SRC3 is recruited to endogenous T3 target genes in vivo in developing tadpoles. Surprisingly, we found that SRC3 was recruited in a gene- and tissue-dependent manner to target genes by TR, both upon T3 treatment of premetamorphic tadpoles and during natural metamorphosis. In particular, in the tail, SRC3 was not recruited in a T3-dependent manner to the target TRbetaA promoter, suggesting either no recruitment or constitutive association. Finally, by using transgenic tadpoles expressing a dominant negative SRC3 (F-dnSRC3), we demonstrated that F-dnSRC3 was recruited in a T3-dependent manner in both the intestine and tail, blocking the recruitment of endogenous coactivators and histone acetylation. These results suggest that SRC3 is utilized in a gene- and tissue-specific manner by TR during development.

摘要

许多与核激素受体结合的共激活因子已在体外被分离和鉴定。相对较少的研究探讨了这些辅因子在体内的发育作用。通过利用两栖类变态完全依赖甲状腺激素(T3)这一模型,我们研究了类固醇受体共激活因子3(SRC3)在体内甲状腺激素受体(TR)激活基因过程中的作用。首先,表达分析表明SRC3在所分析的所有蝌蚪器官中均有表达。此外,在自然变态以及T3诱导的变态过程中,SRC3在尾巴和肠道中均上调,这两个器官在变态过程中会经历广泛的转变,也是本研究的重点。然后我们进行了染色质免疫沉淀分析,以研究在发育中的蝌蚪体内SRC3是否被募集到内源性T3靶基因上。令人惊讶的是,我们发现,无论是对前变态蝌蚪进行T3处理还是在自然变态过程中,SRC3都以基因和组织依赖性的方式被TR募集到靶基因上。特别是在尾巴中,SRC3不是以T3依赖性的方式被募集到靶TRbetaA启动子上,这表明要么没有募集,要么是组成性结合。最后,通过使用表达显性负性SRC3(F-dnSRC3)的转基因蝌蚪,我们证明F-dnSRC3在肠道和尾巴中均以T3依赖性的方式被募集,从而阻断了内源性共激活因子的募集和组蛋白乙酰化。这些结果表明,在发育过程中,TR以基因和组织特异性的方式利用SRC3。

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