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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >A Quasielastic Neutron Scattering Investigation on the Molecular Self-Dynamics of Human Myelin Protein P2
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A Quasielastic Neutron Scattering Investigation on the Molecular Self-Dynamics of Human Myelin Protein P2

机译:一种对人髓鞘蛋白P2分子自动态的准弹性中子散射调查

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摘要

The human myelin protein P2 is a membrane binding protein believed to maintain correct lipid composition and organization in peripheral nerve myelin. Its function is related to its ability to stack membranes, and this function can be enhanced by the P38G mutation, whereby the overall protein structure does not change but the molecular dynamics increase. Mutations in P2 are linked to human peripheral neuropathy. Here, the dynamics of wild-type P2 and the P38G variant were studied using quasielastic neutron scattering on time scales from 10 ps to 1 ns at 300 K. The results suggest that the mutant protein dynamics are increased on both the fastest and the slowest measured time scales, by increasing the dynamics amplitude and/or the portion of atoms participating in the movement.
机译:人髓鞘蛋白P2是膜结合蛋白,被认为在外周神经髓鞘中保持正确的脂质组合物和组织。 其功能与其堆叠膜的能力有关,并且通过P38G突变可以增强该功能,从而整体蛋白质结构不会改变,但分子动力学增加。 P2中的突变与人周围神经病变有关。 这里,使用从10g0ps至1ns的弧度散射进行野生型p2和p38g变体的动态,从10 pe至300k。结果表明突变蛋白动态在最快和最慢的测量中增加 通过增加参与运动的动力学幅度和/或原子的动态幅度和/或部分。

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