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首页> 外文期刊>Angewandte Chemie >EPR Spectroscopy Detects Various Active State Conformations of the Transcriptional Regulator CueR
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EPR Spectroscopy Detects Various Active State Conformations of the Transcriptional Regulator CueR

机译:EPR光谱检测转录调节器CUER的各种有源状态构象

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摘要

The interactions between proteins and their specific DNA sequences are the basis of many cellular processes. Hence, developing methods to build an atomic level picture of these interactions helps improve our understanding of key cellular mechanisms. CueR is an Escherichia coli copper-sensing transcription regulator. The inhibition of copper-sensing transcription regulators can kill pathogens, without harming the host. Several spectroscopic studies and crystallographic data have suggested that changes in the conformation of both the DNA and the protein control transcription. However, due to the inadequate resolution of these methods, the exact number of active conformations of CueR has not been determined. Resolving the structure of CueR in its active state is highly important for the development of specific inhibitors. Herein, the potential of double-histidine (dHis)-based Cu-II spin labeling for the identification of various conformational states of CueR during transcription is shown.
机译:蛋白质和其特定DNA序列之间的相互作用是许多细胞过程的基础。 因此,开发建立这些交互的原子水平图像的方法有助于提高我们对关键蜂窝机制的理解。 CUER是大肠杆菌铜传感转录调节器。 抑制铜传感转录调节剂可以杀死病原体,而不会损害宿主。 几种光谱研究和晶体学数据表明DNA和蛋白质对照转录的构象变化。 然而,由于这些方法的分辨率不足,尚未确定Cuer的确切数量的Cuer的主动构象数。 在其活跃状态下解决CUER的结构对于特异性抑制剂的发展非常重要。 在此,示出了在转录期间进行双组织(DHIS)基于Cu-II旋转标记的潜在的Cu-II旋转标记。

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