首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >The DNA loop model for ara repression: AraC protein occupies the proposed loop sites in vivo and repression-negative mutations lie in these same sites.
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The DNA loop model for ara repression: AraC protein occupies the proposed loop sites in vivo and repression-negative mutations lie in these same sites.

机译:用于ara抑制的DNA环模型:AraC蛋白在体内占据了拟议的环位点而抑制负突变位于这些相同位点。

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摘要

Two sets of experiments have been performed to test the DNA loop model of repression of the araBAD operon of Escherichia coli. First, dimethyl sulfate methylation protection measurements on normally growing cells show that the AraC regulatory protein occupies the araI site in the presence and absence of the inducer arabinose. Similarly, the araO2 site is shown to be occupied by AraC protein in the presence and absence of arabinose; however, its occupancy by AraC is greatly reduced when araI and adjacent sequences are deleted. Thus, AraC protein binds to araO2 cooperatively with some other component of the ara system located at least 60 base pairs away. Second, the mutational analysis presented here shows that the DNA components required for repression of araBAD are araI, araO2, and perhaps the araBAD operon RNA polymerase binding site.
机译:已经进行了两组实验以测试大肠杆菌的araBAD操纵子的DNA环模型。首先,在正常生长的细胞上进行的硫酸二甲酯甲基化保护测量显示,在存在和不存在诱导剂阿拉伯糖的情况下,AraC调节蛋白占据了araI位点。同样,在存在和不存在阿拉伯糖的情况下,araO2位点也被AraC蛋白占据。然而,当araI和相邻序列被删除时,其被AraC占据的比例大大降低。因此,AraC蛋白与araO系统的至少60个碱基对之间的其他部分协同结合。其次,此处显示的突变分析表明,抑制araBAD所需的DNA成分是araI,araO2,也许是araBAD操纵子RNA聚合酶结合位点。

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