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首页> 外文期刊>Molecular and Cellular Biology >In vitro analysis of promoter elements regulating transcription of the phosphoenolpyruvate carboxykinase (GTP) gene.
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In vitro analysis of promoter elements regulating transcription of the phosphoenolpyruvate carboxykinase (GTP) gene.

机译:体外分析调节磷酸烯醇丙酮酸羧激酶(GTP)基因转录的启动子。

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摘要

A cell-free system for the study of transcription from the promoter of the phosphoenolpyruvate carboxykinase (GTP) gene by using nuclear extracts from rat tissues was developed. The level of basal transcription from the phosphoenolpyruvate carboxykinase (PEPCK) promoter between -490 and +73 was highest when extracts from liver nuclei, rather than kidney, spleen, and HeLa nuclear extracts, were used. A series of 5' deletions and block mutations were also tested for their effects on basal transcription in vitro. The promoter truncated to -355 had the highest rate of basal transcription, while subsequent deletion to -277 markedly decreased the rate of transcription. Further deletion of the promoter to -134 resulted in a twofold increase in the basal level of transcription compared with that of the promoter deleted to -277. However, subsequent deletion of the NF-1-CCAAT-binding transcription factor binding site or the proximal cyclic AMP (cAMP) regulatory element caused a decrease in basal transcription. Block mutations were inserted into nine specific protein-binding regions of the PEPCK promoter previously shown to be of functional significance or to bind nuclear proteins. Mutation of the TATA box resulted in a 94% decrease in the level of transcription noted with the intact promoter, while sequence substitutions within the proximal cAMP regulatory element decreased the transcription rate to 25%. The addition of the catalytic subunit of cAMP-dependent protein kinase to the in vitro system stimulated transcription from the intact promoter or from a promoter deletion to -109. However, a promoter deletion to -68, which removes the proximal cAMP regulatory element, was unresponsive to added protein kinase catalytic subunit. These findings indicate that the PEPCK promoter between -490 and +73 contains sequences responsive to hormonal and tissue-specific factors in nuclei from rat tissues. The sensitivity of this in vitro transcription system closely mimics the process regulating PEPCK transcription in rat tissues and should make it ideal for testing the function of purified transcription factors.
机译:开发了一种无细胞系统,用于通过使用大鼠组织的核提取物来研究磷酸烯醇丙酮酸羧激酶(GTP)基因启动子的转录。使用肝核提取物而不是肾脏,脾脏和HeLa核提取物时,磷酸烯醇丙酮酸羧激酶(PEPCK)启动子的基础转录水平最高,为-490至+73。还测试了一系列5'缺失和嵌段突变对体外基础转录的影响。被截短至-355的启动子具有最高的基础转录率,而随后缺失至-277则明显降低了转录率。与缺失-277的启动子相比,启动子进一步缺失至-134导致基础转录水平增加了两倍。但是,随后的NF-1-CCAAT结合转录因子结合位点或近端环AMP(cAMP)调节元件的删除导致基础转录的减少。将嵌段突变插入PEPCK启动子的九个特定的蛋白质结合区域,该区域先前被证明具有功能重要性或与核蛋白结合。 TATA盒的突变导致完整启动子记录的转录水平降低了94%,而近端cAMP调控元件内的序列取代使转录率降低至25%。将cAMP依赖性蛋白激酶的催化亚基添加至体外系统,可刺激从完整启动子或从启动子缺失到-109的转录。然而,启动子缺失至-68,去除了近端的cAMP调节元件,对添加的蛋白激酶催化亚基无反应。这些发现表明,在-490至+73之间的PEPCK启动子包含对大鼠组织核中的激素和组织特异性因子有响应的序列。这种体外转录系统的敏感性非常类似于调节大鼠组织中PEPCK转录的过程,因此使其非常适合测试纯化的转录因子的功能。

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