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Protein-induced changes in DNA structure and dynamics observed with noncovalent site-directed spin labeling and PELDOR

机译:用非共价定点自旋标记和PELDOR观察到的蛋白质诱导的DNA结构和动力学变化

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摘要

Site-directed spin labeling and pulsed electron–electron double resonance (PELDOR or DEER) have previously been applied successfully to study the structure and dynamics of nucleic acids. Spin labeling nucleic acids at specific sites requires the covalent attachment of spin labels, which involves rather complicated and laborious chemical synthesis. Here, we use a noncovalent label strategy that bypasses the covalent labeling chemistry and show that the binding specificity and efficiency are large enough to enable PELDOR or DEER measurements in DNA duplexes and a DNA duplex bound to the Lac repressor protein. In addition, the rigidity of the label not only allows resolution of the structure and dynamics of oligonucleotides but also the determination of label orientation and protein-induced conformational changes. The results prove that this labeling strategy in combination with PELDOR has a great potential for studying both structure and dynamics of oligonucleotides and their complexes with various ligands.
机译:定点自旋标记和脉冲电子-电子双共振(PELDOR或DEER)以前已成功地用于研究核酸的结构和动力学。特定位置的自旋标记核酸需要自旋标记的共价连接,这涉及相当复杂且费力的化学合成。在这里,我们使用了绕过共价标记化学方法的非共价标记策略,表明结合特异性和效率足够大,可以在DNA双链体和与Lac阻遏蛋白结合的DNA双链体中进行PELDOR或DEER测量。另外,标记的刚性不仅允许解析寡核苷酸的结构和动力学,而且还可以确定标记的方向和蛋白质诱导的构象变化。结果证明,与PELDOR结合使用的这种标记策略在研究寡核苷酸及其与各种配体的复合物的结构和动力学方面具有巨大的潜力。

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