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Solid-state NMR Spectroscopy of a Membrane Protein in Biphenyl Phospholipid Bicelles with the Bilayer Normal Parallel to the Magnetic Field

机译:固态NMR光谱的双苯基法线平行于磁场的联苯磷脂Bicells中的膜蛋白。

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摘要

Bicelles composed of the long-chain biphenyl phospholipid TBBPC (1-tetradecanoyl-2-(4-(4-biphenyl)butanoyl)-sn-glycero-3-PC) and the short-chain phospholipid DHPC align with their bilayer normals parallel to the direction of the magnetic field. In contrast, in typical bicelles the long-chain phospholipid is DMPC or DPPC, and the bilayers align with their normals perpendicular to the field. Samples of the membrane-bound form of the major coat protein of Pf1 bacteriophage in TBBPC bicelles are stable for several months, align magnetically over a wide range of temperatures, and yield well resolved solid-state NMR spectra similar to those obtained from samples aligned mechanically on glass plates or in DMPC bicelle samples “flipped” with lanthanide ions so that their bilayer normals are parallel to the field. The order parameter of the TBBPC bicelle sample decreases from approximately 0.9 to 0.8 upon increasing the temperature from 20°C to 60°C. Since the frequency spans of the chemical shift and dipolar coupling interactions are twice as large as those obtained from proteins in DMPC bicelles without lanthanide ions, TBBPC bicelles provide an opportunity for structural studies with higher spectral resolution of the metal-binding membrane proteins without the risk of chemical or spectroscopic interference from the added lanthanide ions. In addition, the large temperature range of these samples is advantageous for the studies of membrane proteins that are unstable at elevated temperatures and for experiments requiring measurements as a function of temperature.
机译:由长链联苯磷脂TBBPC(1-十四烷酰基-2-(4-(4-联苯苯基丁酰基)-sn-甘油-3-PC)和短链磷脂DHPC组成的双链与其双层法线平行磁场的方向。相反,在典型的Bicell中,长链磷脂是DMPC或DPPC,并且双层与其垂直于视野的法线对齐。在TBBPC Bicells中,Pf1噬菌体的主要外壳蛋白的膜结合形式的样品可以稳定几个月,在宽温度范围内进行磁性排列,并产生与从机械排列的样品获得的相似的良好分辨的固态NMR光谱在玻璃板上或在DMPC比塞尔样品中用镧系元素离子“翻转”,以使其双层法线与电场平行。当温度从20°C升高到60°C时,TBBPC比色尔样品的有序参数从大约0.9降低到0.8。由于化学位移和偶极耦合相互作用的频率跨度是从不含镧系元素离子的DMPC双细胞中获得的两倍,因此TBBPC双细胞为金属结合膜蛋白的更高光谱分辨率的结构研究提供了机会,而没有风险来自添加的镧系元素离子的化学或光谱干扰。此外,这些样品的大温度范围有利于研究在高温下不稳定的膜蛋白,以及需要根据温度进行测量的实验。

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