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雄激素依赖性增强子的体内足迹分析揭示了激素反应所必需的一个辅助元件。

In vivo footprinting of an androgen-dependent enhancer reveals an accessory element integral to hormonal response.

作者信息

Scarlett C O, Robins D M

机构信息

Department of Human Genetics, University of Michigan Medical Center, Ann Arbor 48109-0618, USA.

出版信息

Mol Endocrinol. 1995 Apr;9(4):413-23. doi: 10.1210/mend.9.4.7659085.

Abstract

A hormonally responsive enhancer that is specifically activated by androgens resides 2 kilobases upstream of the transcription start site of the mouse sex-limited protein (Slp) gene. We have previously shown that strong androgen induction in transfection requires a consensus hormone response element as well as several nonreceptor factor binding sites within this complex enhancer. To determine which accessory elements are required for androgen-dependent transcription, we have examined binding of nuclear proteins to the enhancer both in vitro and in vivo. In vitro footprinting assays demonstrated that multiple factors present in mouse liver and kidney nuclear extracts bound the enhancer, with tissue-specific but not sex-dependent differences in pattern. In contrast, examination of DNA sites occupied in liver chromatin identified a footprint (FPIV) that is well protected in males but sensitive to DNase I in females. FPIV was occupied in males in other sites of Slp expression, such as kidney, but not in tissues lacking expression, such as lung. FPIV protection was induced in females treated with androgen, abrogated in castrated males, and absent in immature mice, implying hormonal and developmental regulation of FPIV binding. Protection of the hormone response element, in contrast to FPIV, was not obvious but was discerned by analysis of densitometry data. Together with results from in vivo protein-DNA interactions determined for other steroid-dependent enhancers, this suggests that in some cases receptor may permit transcriptional activation by altering chromatin structure to allow access to other factors, which may not necessitate tight binding of receptor itself. This further emphasizes the crucial role of the nonreceptor factors in hormone response. The ubiquitous transcription factor Oct-1 forms complexes with an octamer motif present within FPIV by gel shift analysis with liver and kidney extracts, making Oct-1 an intriguing candidate for partnership in androgen regulation.

摘要

一个对激素有反应的增强子,它被雄激素特异性激活,位于小鼠性别限制蛋白(Slp)基因转录起始位点上游2千碱基处。我们之前已经表明,在转染中强烈的雄激素诱导需要一个共有激素反应元件以及这个复杂增强子内的几个非受体因子结合位点。为了确定雄激素依赖性转录需要哪些辅助元件,我们在体外和体内研究了核蛋白与增强子的结合。体外足迹分析表明,小鼠肝脏和肾脏核提取物中存在的多种因子与增强子结合,其模式存在组织特异性但非性别依赖性差异。相比之下,对肝脏染色质中占据的DNA位点的检查发现了一个足迹(FPIV),该足迹在雄性中受到很好的保护,但在雌性中对DNase I敏感。FPIV在Slp表达的其他部位(如肾脏)的雄性中存在,但在缺乏表达的组织(如肺)中不存在。用雄激素处理的雌性中诱导了FPIV的保护,去势雄性中消除了这种保护,未成熟小鼠中则不存在这种保护,这意味着FPIV结合存在激素和发育调节。与FPIV相反,激素反应元件的保护并不明显,但通过密度测定数据分析可以辨别。结合其他类固醇依赖性增强子的体内蛋白质-DNA相互作用结果,这表明在某些情况下,受体可能通过改变染色质结构来允许其他因子的进入从而实现转录激活,而这可能并不需要受体本身紧密结合。这进一步强调了非受体因子在激素反应中的关键作用。通过用肝脏和肾脏提取物进行凝胶迁移分析,普遍存在的转录因子Oct-1与FPIV内存在的八聚体基序形成复合物,这使得Oct-1成为雄激素调节中伙伴关系的一个有趣候选者。

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