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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >The impact of window functions on NMR-based paramagnetic relaxation enhancement measurements in membrane proteins.
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The impact of window functions on NMR-based paramagnetic relaxation enhancement measurements in membrane proteins.

机译:窗口功能对膜蛋白中基于NMR的顺磁弛豫增强测量的影响。

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Though challenging, solution NMR spectroscopy allows fundamental interrogation of the structure and dynamics of membrane proteins. One major technical hurdle in studies of helical membrane proteins by NMR is the difficulty of obtaining sufficient long range NOEs to determine tertiary structure. For this reason, long range distance information is sometimes sought through measurement of paramagnetic relaxation enhancements (PRE) of NMR nuclei as a function of distance from an introduced paramagnetic probe. Current PRE interpretation is based on the assumption of Lorentzian resonance lineshapes. However, in order to optimize spectral resolution, modern multidimensional NMR spectra are almost always subjected to resolution-enhancement, leading to distortions in the Lorentizian peak shape. Here it is shown that when PREs are derived using peak intensities (i.e., peak height) and linewidths from both real and simulated spectra that were produced using a wide range of apodization/window functions, that there is little variation in the distances determined (<1 A at the extremes). This indicates that the high degree of resolution enhancement required to obtain well-resolved spectra from helical membrane proteins is compatible with the use of PRE data as a source of distance restraints. While these conclusions are particularly important for helical membrane proteins, they are generally applicable to all PRE measurements made using resolution-enhanced data.
机译:尽管具有挑战性,但溶液NMR光谱学可以对膜蛋白的结构和动力学进行基本的询问。通过NMR研究螺旋膜蛋白的一个主要技术障碍是难以获得足够长距离的NOE以确定三级结构。因此,有时通过测量NMR核的顺磁性弛豫增强(PRE)来测量远距离信息,该信息是距引入的顺磁性探针的距离的函数。当前的PRE解释是基于洛伦兹共振线形的假设。但是,为了优化光谱分辨率,现代多维NMR光谱几乎总是要进行分辨率增强,从而导致洛伦兹峰形变形。此处显示,当使用峰强度(即峰高)和线宽从使用大范围切趾/窗函数产生的真实和模拟光谱得出PRE时,确定的距离几乎没有变化(<极端情况下为1 A)。这表明从螺旋膜蛋白获得良好分辨的光谱所需的高分辨率提高与使用PRE数据作为距离限制的来源兼容。尽管这些结论对于螺旋膜蛋白特别重要,但它们通常适用于所有使用分辨率增强数据进行的PRE测量。

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