Lopez G, Schaufele F, Webb P, Holloway J M, Baxter J D, Kushner P J
Metabolic Research Unit, University of California, San Francisco 94143.
Mol Cell Biol. 1993 May;13(5):3042-9. doi: 10.1128/mcb.13.5.3042-3049.1993.
We have characterized the putative AP1 site in the backbone of pUC plasmids and found unique regulatory effects. The site, which mapped to a 19-bp region around nucleotide 37, conferred transcriptional activation by Jun or Jun/Fos that was boosted up to fivefold by unliganded thyroid hormone receptor (TR). Thyroid hormone changed potentiation of the Jun response by TR into repression. Although the plasmid sequence is a near-perfect consensus AP1 site, the perfect consensus AP1 site from the human collagenase promoter did not show the same effects. Deletion of the ligand binding domain of the TR eliminated the ability of the receptor to boost Jun activity, and deletion, mutation, or changes in specificity of the DNA binding domain eliminated both its ability to potentiate Jun activity and repress with hormone. In vitro Jun/Fos complexes bound the operative plasmid fragment, and the presence of TR interfered very little with Jun/Fos binding activity. Protein interaction studies in the absence of DNA showed that TR bound Jun protein in solution either in the presence or in the absence of hormone. These observations suggest a mechanism for synergy and repression by TR through modulation of Jun activity: positive when TR is unliganded, and negative when hormone is bound. They also suggest that the presence of the plasmid element can confound studies of the regulation of linked promoters.
我们已对pUC质粒主链中的假定AP1位点进行了表征,并发现了独特的调控作用。该位点定位于核苷酸37周围的一个19碱基对区域,可赋予Jun或Jun/Fos转录激活作用,未结合配体的甲状腺激素受体(TR)可将其增强至五倍。甲状腺激素将TR对Jun反应的增强作用转变为抑制作用。尽管质粒序列是近乎完美的AP1位点一致序列,但来自人胶原酶启动子的完美AP1位点一致序列并未表现出相同的作用。TR配体结合域的缺失消除了受体增强Jun活性的能力,而DNA结合域的缺失、突变或特异性改变则消除了其增强Jun活性和与激素一起发挥抑制作用的能力。体外Jun/Fos复合物可结合有效的质粒片段,TR的存在对Jun/Fos结合活性的干扰很小。在无DNA情况下的蛋白质相互作用研究表明,无论有无激素存在,TR在溶液中均可与Jun蛋白结合。这些观察结果提示了TR通过调节Jun活性实现协同作用和抑制作用的一种机制:TR未结合配体时为正向作用,结合激素时为负向作用。它们还表明,质粒元件的存在可能会混淆对相连启动子调控的研究。