首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Binding of the transcription activator NRI (NTRC) to a supercoiled DNA segment imitates association with the natural enhancer: an electron microscopic investigation.
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Binding of the transcription activator NRI (NTRC) to a supercoiled DNA segment imitates association with the natural enhancer: an electron microscopic investigation.

机译:转录激活因子NRI(NTRC)与超螺旋DNA片段的结合模拟了与天然增强子的缔合:电子显微镜研究。

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摘要

Electron microscopic visualization indicates that the transcription activator NRI (NTRC) binds with exceptional selectivity and efficiency to a sequence-induced superhelical (spiral) segment inserted upstream of the glnA promoter, accounting for its observed ability to substitute for the natural glnA enhancer. The cooperative binding of NRI to the spiral insert leads to protein oligomerization which, at higher concentration, promotes selective coating of the entire superhelical segment with protein. Localization of NRI at apical loops is observed with negatively supercoiled plasmid DNA. With a linear plasmid, bending of DNA is observed. We confirm that NRI is a DNA-bending protein, consistent with its high affinity for spiral DNA. These results prove that spiral DNA without any homology to the NRI-binding sequence site can substitute for the glnA enhancer by promoting cooperative activator binding to DNA and facilitating protein oligomerization. Similar mechanisms might apply to other prokaryotic and eukaryotic activator proteins that share the ability to bend DNA and act efficiently as multimers.
机译:电子显微镜可视化表明,转录激活因子NRI(NTRC)以卓越的选择性和效率与插入glnA启动子上游的序列诱导的超螺旋(螺旋)片段结合,这说明了其观察到的替代天然glnA增强子的能力。 NRI与螺旋插入物的协同结合导致蛋白质低聚,这在较高的浓度下会促进整个超螺旋片段被蛋白质选择性覆盖。用负超螺旋质粒DNA观察到NRI在顶端环上的定位。使用线性质粒,观察到DNA弯曲。我们确认NRI是一种弯曲DNA的蛋白质,与其对螺旋DNA的高亲和力一致。这些结果证明,与NRI结合序列位点没有任何同源性的螺旋DNA可以通过促进协同激活剂与DNA的结合并促进蛋白质寡聚来代替glnA增强子。类似的机制可能适用于其他具有弯曲DNA并有效发挥多聚体作用的原核和真核激活蛋白。

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