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Probing structural transitions in both structured and disordered proteins using site-directed spin-labeling EPR spectroscopy

机译:使用定点自旋标记EPR光谱探测结构化蛋白质和无序蛋白质中的结构转变

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摘要

EPR spectroscopy is a technique that specifically detects unpaired electrons. EPR-sensitive reporter groups (spin labels or spin probes) can be introduced into biological systems via site-directed spin-labeling (SDSL). The basic strategy of SDSL involves the introduction of a paramagnetic group at a selected protein site. This is usually accomplished by cysteine-substitution mutagenesis, followed by covalent modification of the unique sulfydryl group with a selective reagent bearing a nitroxide radical. In this review we briefly describe the theoretical principles of this well-established approach and illustrate how we successfully applied it to investigate structural transitions in both human pancreatic lipase (HPL), a protein with a well-defined α/β hydrolase fold, and the intrinsically disordered C-terminal domain of the measles virus nucleoprotein (N_(TAIL)) upon addition of ligands and/or protein partners. In both cases, SDSL EPR spectroscopy allowed us to document protein conformational changes at the residue level. The studies herein summarized show that this approach is not only particularly well-suited to study IDPs that inherently escape atomistic description by X-ray crystallography but also provides dynamic information on structural transitions occurring within well-characterized structured proteins for which X-ray crystallography can only provide snapshots of the initial and final stages.
机译:EPR光谱学是一种专门检测未配对电子的技术。可以通过定点旋转标记(SDSL)将EPR敏感的报告基团(旋转标记或旋转探针)引入生物系统。 SDSL的基本策略包括在选定的蛋白质位点引入顺磁性基团。这通常是通过半胱氨酸取代诱变来完成的,然后通过带有氮氧化物自由基的选择性试剂对独特的巯基进行共价修饰。在这篇综述中,我们简要描述了这种完善方法的理论原理,并说明了我们如何成功地将其用于研究人胰脂肪酶(HPL),具有明确的α/β水解酶折叠蛋白的蛋白质和加入配体和/或蛋白质伴侣后,麻疹病毒核蛋白(N_(TAIL))的内在无序的C末端结构域。在这两种情况下,SDSL EPR光谱都使我们能够在残留水平上记录蛋白质构象变化。本文总结的研究表明,这种方法不仅特别适合于研究通过X射线晶体学固有逃避原子描述的IDP,而且还提供了有关X射线晶体学可以很好表征的结构化蛋白质中发生的结构转变的动态信息。仅提供初始阶段和最终阶段的快照。

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