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Validation of a Lanthanide Tag for the Analysis of Protein Dynamics by Paramagnetic NMR Spectroscopy

机译:验证通过顺磁NMR光谱分析蛋白质动力学的镧系元素标记

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摘要

Paramagnetic lanthanide tags potentially can enhance the effects of microsecond to millisecond dynamics in proteins on NMR signals and provide structural information on lowly populated states encoded in the pseudocontact shifts. We have investigated the microsecond to millisecond mobility of a two-point attached lanthanide tag, CLaNP-5, using paramagnetic 1H CPMG relaxation dispersion methods. CLaNP-5 loaded with Lu3+, Yb3+, or Tm3+ was attached to three sites on the surface of two proteins, pseudoazurin and cytochrome c. The paramagnetic center causes large relaxation dispersion effects for two attachment sites, suggesting that local dynamics of the protein at the attachment site causes mobility of the paramagnetic center. At one site the relaxation dispersions are small and limited to the immediate environment of the tag. It is concluded that paramagnetic relaxation dispersion could represent a sensitive method to probe protein dynamics. However, the selection of a rigid attachment site is of critical importance.
机译:顺磁性镧系元素标记可能会增强蛋白质对NMR信号的微秒级到毫秒级动态影响,并提供有关伪接触位移编码的低种群状态的结构信息。我们使用顺磁性 1 H CPMG弛豫分散法研究了两点连接的镧系元素标记CLaNP-5的微秒至毫秒迁移率。装有Lu 3 + ,Yb 3 + 或Tm 3 + 的CLaNP-5连接到两种蛋白质表面的三个位点,假天青素和细胞色素c。顺磁性中心对两个附着位点引起大的弛豫分散效应,这表明蛋白质在附着位点的局部动力学引起顺磁性中心的迁移。在一个位置上,驰豫分散很小,并局限于标签的直接环境。结论是顺磁弛豫分散可能代表了一种探测蛋白质动力学的灵敏方法。但是,选择刚性附着部位至关重要。

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