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Observation of a Low-Temperature Dynamically Driven Structural Transition in a Polypeptide by Solid State NMR Spectroscopy

机译:固态NMR光谱观察多肽中的低温动态驱动结构转变

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摘要

At reduced temperatures, proteins and other biomolecules are generally found to exhibit dynamic as well as structural transitions. This includes a so-called protein glass transition that is universally observed in systems cooled between 200–230K, and which is generally attributed to interactions between hydrating solvent molecules and protein side chains. However, there is also experimental and theoretical evidence for a low-temperature transition in the intrinsic dynamics of the protein itself, absent any solvent. Here, we use low-temperature solid state NMR to examine site specific fluctuations in atomic structure and dynamics in the absence of solvents. In particular, we employ magic angle spinning NMR to examine a structural phase transition associated with dynamic processes in a solvent-free polypeptide, N-f-MLF-OH, lattice at temperatures as low as 90K. This transition is characterized by the appearance of an extra set of lines in 1D 15N spectra as well as additional cross peaks in 2D 13C-13C and 13C-15N spectra. Interestingly, the gradual, temperature-dependent appearance of the new spectral component is not accompanied by the line broadening typical of dynamic transitions. A direct comparison between the spectra of N-f-MLF-OH and the analog N-f-MLF-OMe, which does not display this transition, indicates a correlation of the structural transition to the temperature dependent motion of the aromatic phenylalanine side chain. Several quantitative solid state NMR experiments were employed to provide site-specific measurements of structural and motional features of the observed transition.
机译:在降低的温度下,通常发现蛋白质和其他生物分子表现出动态以及结构转变。这包括所谓的蛋白质玻璃化转变,这种现象在冷却至200–230K的系统中普遍观察到,通常归因于水合溶剂分子和蛋白质侧链之间的相互作用。但是,也有实验和理论证据表明,在没有任何溶剂的情况下,蛋白质本身的内在动力学会发生低温转变。在这里,我们使用低温固态NMR在没有溶剂的情况下检查原子结构和动力学中的特定位置波动。特别是,我们采用魔术角旋转NMR来检查与无溶剂多肽N-f-MLF-OH的动态过程相关的结构相变,其温度低至90K。此过渡的特征是在1D 15 N光谱中出现了一组额外的线,并在2D 13 C- 13 C和 13 C- 15 N光谱。有趣的是,新的光谱分量的逐渐出现,与温度有关的外观并没有伴随动态过渡典型的线展宽。 N-f-MLF-OH和类似物N-f-MLF-OMe光谱之间的直接比较(未显示此跃迁)表明结构跃迁与芳族苯丙氨酸侧链的温度依赖性运动相关。进行了几个定量的固态NMR实验,以提供特定位置的观测过渡的结构和运动特征的测量。

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