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利用多个外在报告基团绘制蛋白质在组装体中的全局角度转变图谱。

Mapping global angular transitions of proteins in assemblies using multiple extrinsic reporter groups.

作者信息

Burghardt T P, Ajtai K

机构信息

Department of Biochemistry and Molecular Biology, Mayo Foundation, Rochester, Minnesota 55905.

出版信息

Biochemistry. 1992 Jan 14;31(1):200-6. doi: 10.1021/bi00116a029.

Abstract

The fluorescence polarization intensities from fluorescent probes and the electron paramagnetic resonance spectra from spin probes, specifically modifying elements of a biological assembly such as myosin sulfhydryl 1 (SH1) in muscle fibers, are interpreted in terms of probe order parameters using a model-independent method. The probe order parameters are related to each other by an Euler rotation of coordinates. We use this relationship to link the sets of order parameters from the different probes and in so doing create a system of equations that can be solved using only the information available from the experimental data. The solution yields the Euler angles relating the different probe coordinate frames and a larger set of probe order parameters than can be directly detected experimentally. The Euler angles are used to display the relative orientation of the probe molecular frames. The order parameters give rise to probe angular distributions that are at the theoretical limit of resolution. We demonstrate the utility of this analytical method by investigating the rotation of myosin SH1 from its orientation in rigor upon the binding of the nucleotide MgADP to the myosin cross-bridge. Our findings, discussed in the accompanying paper, suggest that the rigor-to-MgADP cross-bridge angular transition consists predominantly of a rotation about the hydrodynamic axis of symmetry of the cross-bridge, i.e., its torsional degree of freedom [Ajtai, K., Ringler, A., & Burghardt, T. P. (1992) Biochemistry (following paper in this issue)].

摘要

利用一种与模型无关的方法,根据探针序参量来解释荧光探针的荧光偏振强度以及自旋探针的电子顺磁共振谱,这些探针专门修饰生物组件的元素,如肌纤维中的肌球蛋白巯基1(SH1)。通过坐标的欧拉旋转,探针序参量相互关联。我们利用这种关系来连接不同探针的序参量集,从而创建一个方程组,该方程组仅使用实验数据中可用的信息即可求解。解出的结果给出了与不同探针坐标系相关的欧拉角以及一组比实验直接检测到的更大的探针序参量。欧拉角用于显示探针分子框架的相对取向。序参量产生了处于理论分辨率极限的探针角分布。我们通过研究核苷酸MgADP与肌球蛋白横桥结合时,肌球蛋白SH1从其在僵直状态下的取向发生的旋转,证明了这种分析方法的实用性。我们的发现(在随附论文中讨论)表明,从僵直状态到MgADP状态的横桥角转变主要由围绕横桥流体动力学对称轴的旋转组成,即其扭转自由度[Ajtai, K., Ringler, A., & Burghardt, T. P. (1992) Biochemistry(本期后续论文)]。

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