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首页> 外文期刊>Journal of magnetic resonance >Advanced solid-state NMR techniques for characterization of membrane protein structure and dynamics: Application to Anabaena Sensory Rhodopsin
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Advanced solid-state NMR techniques for characterization of membrane protein structure and dynamics: Application to Anabaena Sensory Rhodopsin

机译:表征膜蛋白结构和动力学的先进固态NMR技术:在鱼腥感官视紫红质中的应用

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Studies of the structure, dynamics, and function of membrane proteins (MPs) have long been considered one of the main applications of solid-state NMR (SSNMR). Advances in instrumentation, and the plethora of new SSNMR methodologies developed over the past decade have resulted in a number of high-resolution structures and structural models of both bitopic and polytopic alpha-helical MPs. The necessity to retain lipids in the sample, the high proportion of one type of secondary structure, differential dynamics, and the possibility of local disorder in the loop regions all create challenges for structure determination. In this Perspective article we describe our recent efforts directed at determining the structure and functional dynamics of Anabaena Sensory Rhodopsin, a heptahelical transmembrane (7TM) protein. We review some of the established and emerging methods which can be utilized for SSNMR-based structure determination, with a particular focus on those used for ASR, a bacterial protein which shares its 7TM architecture with G-protein coupled receptors. (C) 2014 Elsevier Inc. All rights reserved.
机译:长期以来,对膜蛋白(MPs)的结构,动力学和功能的研究一直被认为是固态NMR(SSNMR)的主要应用之一。仪器的进步以及在过去十年中开发的大量新的SSNMR方法学已经导致了双位和多位α-螺旋MP的许多高分辨率结构和结构模型。将脂质保留在样品中的必要性,一种类型的二级结构的高比例,微分动力学以及环路区域中局部无序的可能性,都对结构确定提出了挑战。在此“观点”文章中,我们描述了我们最近为确定Anabaena感官视紫红质(一种七螺旋跨膜(7TM)蛋白)的结构和功能动力学所做的努力。我们回顾了可用于基于SSNMR的结构确定的一些已建立和新兴的方法,特别关注那些用于ASR的方法,ASR是一种与G蛋白偶联受体共享7TM结构的细菌蛋白。 (C)2014 Elsevier Inc.保留所有权利。

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