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仓鼠朊病毒蛋白中的缓慢构象动力学

Slow conformational dynamics in the hamster prion protein.

作者信息

Kuwata Kazuo, Kamatari Yuji O, Akasaka Kazuyuki, James Thomas L

机构信息

Department of Biochemistry and Biophysics, School of Medicine, Gifu University, Gifu 500-8705 Japan.

出版信息

Biochemistry. 2004 Apr 20;43(15):4439-46. doi: 10.1021/bi036123o.

Abstract

Although the mechanism of the conformational conversion from the cellular (PrP(C)) to the scrapie (PrP(Sc)) form of animal prion proteins has yet to be elucidated, evidence is accumulating that may provide insight into the conversion process at atomic resolution. Here we show critical aspects of the slow fluctuation dynamics of the recombinant hamster prion protein, rPrP(90-231), based on NMR relaxation analysis using Carr-Purcell-Meiboom-Gill (CPMG) experiments, and compare them in detail with results from high-pressure NMR. Residues exhibiting slow fluctuations on the time scale of microseconds to milliseconds are mainly localized on helices B and C (172-193 and 200-227), which include locally disordered regions in an intermediate conformer, PrP*, identified previously by high-pressure NMR [Kuwata, K., et al., (2002) Biochemistry 41, 12277-12283]. Moreover, chemical shift differences between two putative exchanging conformers obtained by the CPMG relaxation analysis and the linear component of the pressure-induced chemical shift changes are reasonably correlated at individual residue sites. These observations suggest that both the CMPG relaxation and the pressure shifts reflect slow conformational fluctuations and that these slow motions in PrP(C) are related to the trajectories leading to the transition to PrP*.

摘要

尽管动物朊病毒蛋白从细胞型(PrP(C))到瘙痒病型(PrP(Sc))的构象转换机制尚未阐明,但越来越多的证据可能为原子分辨率下的转换过程提供见解。在此,我们基于使用Carr-Purcell-Meiboom-Gill(CPMG)实验的核磁共振弛豫分析,展示了重组仓鼠朊病毒蛋白rPrP(90 - 231)的慢波动动力学的关键方面,并将其与高压核磁共振的结果进行了详细比较。在微秒到毫秒时间尺度上表现出慢波动的残基主要位于螺旋B和C上(172 - 193和200 - 227),其中包括先前通过高压核磁共振鉴定的中间构象体PrP中的局部无序区域[Kuwata, K., 等人,(2002) Biochemistry 41, 12277 - 12283]。此外,通过CPMG弛豫分析获得的两个假定的交换构象体之间的化学位移差异与压力诱导的化学位移变化的线性成分在各个残基位点具有合理的相关性。这些观察结果表明,CPMG弛豫和压力位移都反映了慢构象波动,并且PrP(C)中的这些慢运动与导致向PrP转变的轨迹有关。

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