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膜中脂质自旋标记物电子顺磁共振谱的多频模拟

Multifrequency simulations of the EPR spectra of lipid spin labels in membranes.

作者信息

Livshits V A, Kurad Dieter, Marsh D

机构信息

Max-Planck-Institut für biophysikalische Chemie, Abt. Spektroskopie, 37077 Göttingen, Germany.

出版信息

J Magn Reson. 2006 May;180(1):63-71. doi: 10.1016/j.jmr.2006.01.005. Epub 2006 Jan 31.

Abstract

Simulations are performed of 34- and 9-GHz EPR spectra, together with 94-GHz EPR spectra, from phospholipid probes spin-labelled at the C4-C14 positions of the sn-2 chain, in liquid-ordered and gel-phase membranes of dimyristoyl phosphatidylcholine with high and low cholesterol contents. The multifrequency simulation strategy involves: (i) obtaining partially averaged spin-Hamiltonian tensors from fast-motional simulations of the 94-GHz spectra; (ii) performing slow-motional simulations of the 34- and 9-GHz spectra by using these pre-averaged tensors with the stochastic Liouville formalism; (iii) constructing, by simulation, slow-motional calibrations for the differences, DeltaA(zz)(qx) and Deltag(zz)(qx), in effective A(zz)-hyperfine splittings and g(zz)-values between 34- (or 94-GHz) and 9-GHz spectra; (iv) using such calibrations for DeltaA(zz)(qx) and Deltag(zz)(qx) and dynamic parameters from stage (ii) as a guide to adjust the extent of pre-averaging of the spin-Hamiltonian tensors; and (v) repeating the 34- and 9-GHz simulations of stage (ii). By using this scheme it is possible to obtain consistent values of the rotational diffusion coefficients, D(R perpendicular) and D(R//), and the long-axis order parameter, S(zz), that characterize the slow axial motion of the lipid chains, from spectra at both 34 and 9GHz. Inclusion of spectra at 34GHz greatly improves precision in determining the D(R//) element of the slow diffusion tensor in these systems.

摘要

对来自在二肉豆蔻酰磷脂酰胆碱的高胆固醇和低胆固醇含量的液晶态和凝胶相膜中,于sn-2链的C4 - C14位置自旋标记的磷脂探针的34GHz和9GHz电子顺磁共振(EPR)光谱,以及94GHz EPR光谱进行了模拟。多频模拟策略包括:(i) 从94GHz光谱的快速运动模拟中获得部分平均的自旋哈密顿张量;(ii) 通过使用这些预平均张量和随机刘维尔形式,对34GHz和9GHz光谱进行慢运动模拟;(iii) 通过模拟构建34GHz(或94GHz)和9GHz光谱之间有效A(zz) - 超精细分裂和g(zz) - 值差异DeltaA(zz)(qx)和Deltag(zz)(qx)的慢运动校准;(iv) 使用DeltaA(zz)(qx)和Deltag(zz)(qx)的这种校准以及来自(ii)阶段的动态参数作为指导,来调整自旋哈密顿张量的预平均程度;以及(v) 重复(ii)阶段的34GHz和9GHz模拟。通过使用此方案,可以从34GHz和9GHz的光谱中获得表征脂质链慢轴向运动的旋转扩散系数D(R垂直)和D(R//)以及长轴序参数S(zz)的一致值。包含34GHz的光谱极大地提高了确定这些系统中慢扩散张量的D(R//)元素的精度。

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