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载有人血清白蛋白的金属卟啉和脂肪酸的溶液结构特征。

Characterization of the solution structure of human serum albumin loaded with a metal porphyrin and fatty acids.

机构信息

Max Planck Institute for Polymer Research, Mainz, Germany.

出版信息

Biophys J. 2011 May 4;100(9):2293-301. doi: 10.1016/j.bpj.2011.03.050.

Abstract

The structure of human serum albumin loaded with a metal porphyrin and fatty acids in solution is characterized by orientation-selective double electron-electron resonance (DEER) spectroscopy. Human serum albumin, spin-labeled fatty acids, and Cu(II) protoporphyrin IX-a hemin analog-form a fully self-assembled system that allows obtaining distances and mutual orientations between the paramagnetic guest molecules. We report a simplified analysis for the orientation-selective DEER data which can be applied when the orientation selection of one spin in the spin pair dominates the orientation selection of the other spin. The dipolar spectra reveal a dominant distance of 3.85 nm and a dominant orientation of the spin-spin vectors between Cu(II) protoporphyrin IX and 16-doxyl stearic acid, the electron paramagnetic resonance reporter group of the latter being located near the entry points to the fatty acid binding sites. This observation is in contrast to crystallographic data that suggest an asymmetric distribution of the entry points in the protein and hence the occurrence of various distances. In conjunction with the findings of a recent DEER study, the obtained data are indicative of a symmetric distribution of the binding site entries on the protein's surface. The overall anisotropic shape of the protein is reflected by one spin-spin vector orientation dominating the DEER data.

摘要

载有人血清白蛋白、金属卟啉和脂肪酸的溶液结构通过取向选择性双电子-电子共振(DEER)光谱进行了表征。人血清白蛋白、自旋标记的脂肪酸和 Cu(II)原卟啉 IX-a 血红素类似物形成了一个完全自组装的系统,允许获得顺磁客体分子之间的距离和相互取向。我们报告了一种简化的取向选择性 DEER 数据分析方法,当自旋对中一个自旋的取向选择主导另一个自旋的取向选择时,可以应用该方法。偶极子光谱揭示了一个主要距离为 3.85nm,Cu(II)原卟啉 IX 和 16-二氧代硬脂酸之间的自旋-自旋向量的主要取向,后者的电子顺磁共振报告基团位于脂肪酸结合位点的入口附近。这一观察结果与晶体学数据形成对比,晶体学数据表明蛋白质中入口点的分布不对称,因此存在各种距离。结合最近的 DEER 研究结果,获得的数据表明蛋白质表面结合位点入口呈对称分布。蛋白质的整体各向异性形状反映在一个自旋-自旋向量取向主导 DEER 数据上。

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