Experimental Therapeutics Centre, Agency for Science, Technology and Research (A*STAR), Singapore, 138669 Singapore.
Curr Protein Pept Sci. 2012 Sep;13(6):585-600. doi: 10.2174/138920312803582979.
Membrane proteins play important roles in signal transduction across the cell membrane. Structural information for the membrane proteins is still limited due to many technical challenges. Membrane proteins containing a single α- helical transmembrane (TM) domain are very important in several pathways. Solution NMR spectroscopy is an important tool for the study of the structure of the TM domain of these types of proteins due to their small size. In this review, we summarize the importance of some single-span membrane proteins in signal transduction and the importance of understanding the structure of the TM domain. We discussed the current progress in the structural study of these types of proteins using solution NMR spectroscopy. We summarize the structures solved during last several years. The structures of the regulatory domain of the ion channels such as KCNE1, integrin and viral proteins such as the M2 channel are described. The binding interface of single TM-TM domains is discussed based on NMR structural studies. Strategies including sample preparation, detergent screening, and structural determination of single-span membrane protein are summarized. We also discuss the potential application of NMR spectroscopy to drug discovery of proteins with a single-span TM domain.
膜蛋白在跨膜信号转导中发挥着重要作用。由于许多技术挑战,膜蛋白的结构信息仍然有限。含有单个α-螺旋跨膜(TM)结构域的膜蛋白在几种途径中非常重要。由于其体积小,溶液 NMR 光谱学是研究此类蛋白质 TM 结构域结构的重要工具。在这篇综述中,我们总结了一些单跨膜蛋白在信号转导中的重要性,以及理解 TM 结构域结构的重要性。我们讨论了使用溶液 NMR 光谱学研究这类蛋白质结构的最新进展。我们总结了过去几年中解决的结构。描述了离子通道(如 KCNE1、整合素)调节域和病毒蛋白(如 M2 通道)的结构。基于 NMR 结构研究讨论了单个 TM-TM 结构域的结合界面。总结了包括样品制备、去污剂筛选和单跨膜蛋白结构测定在内的策略。我们还讨论了 NMR 光谱学在具有单跨 TM 结构域的蛋白质药物发现中的潜在应用。