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NMR Methods for Structural Characterization of Protein-Protein Complexes

机译:蛋白质 - 蛋白质复合物的结构表征NMR方法

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Protein-protein interactions and the complexes thus formed are critical elements in a wide variety of cellular events that require an atomic-level description to understand them in detail. Such complexes typically constitute challenging systems to characterize and drive the development of innovative biophysical methods. NMR spectroscopy techniques can be applied to extract atomic resolution information on the binding interfaces, intermolecular affinity, and binding-induced conformational changes in protein-protein complexes formed in solution, in the cell membrane, and in large macromolecular assemblies. Here we review experimental techniques for the characterization of protein-protein complexes in both solution NMR and solid-state NMR spectroscopy. The approaches include solvent paramagnetic relaxation enhancement and chemical shift perturbations for the identification of binding interfaces, and the application of intermolecular nuclear Overhauser effect spectroscopy and residual dipolar couplings to obtain structural constraints of protein-protein complexes in solution. Complementary methods in solid-state NMR are reviewed, with emphasis on the versatility provided by heteronuclear dipolar recoupling to extract intermolecular constraints in differentially labeled protein complexes. The methods described are of particular relevance to the analysis of membrane proteins, such as those involved in signal transduction pathways, since they can potentially be characterized by both solution and solid-state NMR techniques, and thus outline key developments in this frontier of structural biology.
机译:由此形成的蛋白质 - 蛋白质相互作用和由此形成的复合物是在各种细胞事件中的关键元件,其需要原子水平描述以详细了解它们。这种复合物通常构成具有挑战性的系统,以表征和推动创新生物物理方法的发展。可以施加NMR光谱技术以提取关于在溶液中形成的蛋白质 - 蛋白质复合物中的结合界面,分子间亲和力和结合诱导的构象变化的原子分辨率信息,在细胞膜中和大的大分子组件中。在这里,我们审查了在溶液NMR和固态NMR光谱中表征蛋白质 - 蛋白质复合物的实验技术。该方法包括溶剂顺磁性松弛增强和用于鉴定结合界面的化学变换扰动,以及分子间核传输效应谱和残留偶极偶联的应用,以获得溶液中蛋白质 - 蛋白质复合物的结构约束。综述固态NMR中的互补方法,重点是异核偶极循环循环术提供的多功能性,以提取差异标记的蛋白质复合物中的分子间约束。所描述的方法与膜蛋白的分析特别相关,例如涉及信号转导途径的那些,因为它们可以通过溶液和固态NMR技术表征,因此在结构生物学前沿的概述关键发展。

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