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Quantitative analysis of backbone motion in proteins using MAS solid-state NMR spectroscopy

机译:使用MAS固态NMR光谱对蛋白质中骨干运动进行定量分析

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We present a comprehensive analysis of protein dynamics for a micro-crystallin protein in the solid-state. Experimental data include N-15 T (1) relaxation times measured at two different magnetic fields as well as H-1-N-15 dipole, N-15 CSA cross correlated relaxation rates which are sensitive to the spectral density function J(0) and are thus a measure of T (2) in the solid-state. In addition, global order parameters are included from a H-1,N-15 dipolar recoupling experiment. The data are analyzed within the framework of the extended model-free Clore-Lipari-Szabo theory. We find slow motional correlation times in the range of 5 and 150 ns. Assuming a wobbling in a cone motion, the amplitude of motion of the respective amide moiety is on the order of 10A degrees for the half-opening angle of the cone in most of the cases. The experiments are demonstrated using a perdeuterated sample of the chicken alpha-spectrin SH3 domain.
机译:我们目前对固态的微晶状体蛋白的蛋白质动力学进行全面分析。实验数据包括在两个不同磁场下测得的N-15 T(1)弛豫时间以及H-1-N-15偶极子,对光谱密度函数J(0)敏感的N-15 CSA互相关弛豫率因此是固态中T(2)的量度。此外,H-1,N-15偶极子再耦合实验还包括全局阶次参数。在扩展的无模型Clore-Lipari-Szabo理论框架内分析数据。我们发现慢动作相关时间在5到150 ns的范围内。假设在圆锥运动中摆动,则在大多数情况下,对于圆锥的半开角,各个酰胺部分的运动幅度约为10A度。使用鸡α-血影蛋白SH3结构域的氘代样品证明了实验。

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