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Analysis of saturation transfer electron paramagnetic resonance spectra of a spin-labeled integral membrane protein band 3 in terms of the uniaxial rotational diffusion model.

机译:根据单轴旋转扩散模型分析自旋标记的整合膜蛋白(带3)的饱和转移电子顺磁共振光谱。

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摘要

Algorithms have been developed for the calculation of saturation transfer electron paramagnetic resonance (ST-EPR) spectra of a nitroxide spin-label assuming uniaxial rotational diffusion, a model that is frequently used to describe the global rotational dynamics of large integral membrane proteins. One algorithm explicitly includes terms describing Zeeman overmodulation effects, whereas the second more rapid algorithm treats these effects approximately using modified electron spin-lattice and spin-spin relaxation times. Simulations are presented to demonstrate the sensitivity of X-band ST-EPR spectra to the rate of uniaxial rotational diffusion and the orientation of the nitroxide probe with respect to the diffusion axis. Results obtained by using the algorithms presented, which are based on the transition-rate formalism, are in close agreement with those obtained by using an eigenfunction expansion approach. The effects of various approximations used in the simulation algorithms are considered in detail. Optimizing the transition-rate formalism to model uniaxial rotational diffusion results in over an order of magnitude reduction in computation time while allowing treatment of nonaxial A- and g-tensors. The algorithms presented here are used to perform nonlinear least-squares analyses of ST-EPR spectra of the anion exchange protein of the human erythrocyte membrane, band 3, which has been affinity spin-labeled with a recently developed dihydrostilbene disulfonate derivative, [15N,2H13]-SL-H2DADS-MAL. These results suggest that all copies of band 3 present in intact erythrocytes undergo rotational diffusion about the membrane normal axis at a rate consistent with a band 3 dimer.
机译:已经开发了用于计算假定单轴旋转扩散的一氧化氮自旋标记的饱和转移电子顺磁共振(ST-EPR)光谱的算法,该模型经常用于描述大型整体膜蛋白的整体旋转动力学。一种算法明确地包含描述塞曼过调制效应的术语,而第二种更快的算法则近似使用修正的电子自旋晶格和自旋自旋弛豫时间来处理这些效应。进行仿真以证明X波段ST-EPR光谱对单轴旋转扩散速率和一氧化氮探针相对于扩散轴的方向的敏感性。通过使用提出的基于过渡率形式主义的算法获得的结果与通过特征函数展开法获得的结果非常一致。详细考虑了仿真算法中使用的各种近似值的影响。优化过渡速率形式以建模单轴旋转扩散会导致计算时间减少一个数量级以上,同时允许处理非轴向A和G张量。本文介绍的算法用于对人类红细胞膜第3带的阴离子交换蛋白的ST-EPR光谱进行非线性最小二乘法分析,该肽已用最近开发的二氢二苯乙烯二磺酸盐衍生物[15N, 2H13] -SL-H2DADS-MAL。这些结果表明完整红细胞中存在的带3的所有拷贝以与带3二聚体一致的速率绕膜法向轴进行旋转扩散。

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