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首页> 外文期刊>Journal of Biomolecular NMR >Tendamistat surface accessibility to the TEMPOL paramagnetic probe.
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Tendamistat surface accessibility to the TEMPOL paramagnetic probe.

机译:Tendamistat表面可接近TEMPOL顺磁探针。

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摘要

TEMPOL, the soluble spin-label 4-hydroxy-2,2,6,6-tetramethyl-piperidine-1-oxyl, has been used to determine the surface characteristics of tendamistat, a small protein with a well-characterised structure both in solution and in the crystal. A good correlation has been found between predicted regions of exposed protein surface and the intensity attenuations induced by the probe on 2D NMR TOCSY cross peaks of tendamistat in the paramagnetic water solution. All the high paramagnetic effects have been interpreted in terms of more efficient competition of TEMPOL with water molecules at some surface positions. The active site of tendamistat coincides with the largest surface patch accessible to the probe. A strong hydration of protein N and C termini can also be suggested by this structural approach, as these locations exhibit reduced paramagnetic perturbations. Provided that the solution structure is known, the use of this paramagnetic probe seems to be well suited to delineate the dynamic behaviour of the protein surface and, more generally, to gain relevant information about the molecular presentation processes.
机译:TEMPOL,可溶的自旋标记的4-羟基-2,2,6,6-四甲基-哌啶-1-氧基,已被用于测定tendamistat的表面特性,tendastat是一种在溶液中均具有良好结构的小蛋白并在水晶中。已发现,在暴露的蛋白质表面的预测区域与顺磁性水溶液中肌腱抑止剂的2D NMR TOCSY交叉峰上探针引起的强度衰减之间存在良好的相关性。所有更高的顺磁效应都可以通过TEMPOL与某些表面位置的水分子更有效的竞争来解释。替米司他的活性部位与探针可及的最大表面贴剂重合。这种结构方法还可以暗示蛋白质N和C末端的强水合,因为这些位置表现出减少的顺磁扰动。如果已知溶液的结构,则使用这种顺磁探针似乎非常适合描述蛋白质表面的动态行为,更一般地,它可以获取有关分子呈递过程的相关信息。

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