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High-field (275 GHz) spin-label EPR for high-resolution polarity determination in proteins.用于蛋白质高分辨率极性测定的高场(275吉赫兹)自旋标记电子顺磁共振技术。
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The diverse biological functions of phosphatidylinositol transfer proteins in eukaryotes.真核生物中磷脂酰肌醇转移蛋白的多种生物学功能。
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Lipid membrane polarity profiles by high-field EPR.通过高场电子顺磁共振获得的脂质膜极性分布
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High-field EPR studies of the structure and conformational changes of site-directed spin labeled bacteriorhodopsin.定向自旋标记细菌视紫红质的结构与构象变化的高场电子顺磁共振研究
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Sec14p磷脂结合腔内的局部极性和氢键:高场多频电子顺磁共振研究

Local polarity and hydrogen bonding inside the Sec14p phospholipid-binding cavity: high-field multi-frequency electron paramagnetic resonance studies.

作者信息

Smirnova Tatyana I, Chadwick Thomas G, Voinov Maxim A, Poluektov Oleg, van Tol Johan, Ozarowski Andrzej, Schaaf Gabriel, Ryan Margaret M, Bankaitis Vytas A

机构信息

Department of Chemistry, North Carolina State University, Raleigh, North Carolina 27695-8204, USA.

出版信息

Biophys J. 2007 May 15;92(10):3686-95. doi: 10.1529/biophysj.106.097899. Epub 2007 Feb 26.

DOI:10.1529/biophysj.106.097899
PMID:17325006
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1853156/
Abstract

Sec14p promotes the energy-independent transfer of either phosphatidylinositol (PtdIns) or phosphatidylcholine (PtdCho) between lipid bilayers in vitro and represents the major PtdIns/PtdCho transfer protein in the budding yeast Saccharomyces cerevisiae. Herein, we employ multi-frequency high-field electron paramagnetic resonance (EPR) to analyze the electrostatic and hydrogen-bonding microenvironments for series of doxyl-labeled PtdCho molecules bound by Sec14p in a soluble protein-PtdCho complex. A structurally similar compound, 5-doxyl stearic acid dissolved in a series of solvents, was used for experimental calibration. The experiments yielded two-component rigid limit 130- and 220-GHz EPR spectra with excellent resolution in the gx region. Those components were assigned to hydrogen-bonded and nonhydrogen-bonded nitroxide species. Partially resolved 130-GHz EPR spectra from n-doxyl-PtdCho bound to Sec14p were analyzed using this two-component model and allowed quantification of two parameters. First, the fraction of hydrogen-bonded nitroxide species for each n-doxyl-PtdCho was calculated. Second, the proticity profile along the phospholipid-binding cavity of Sec14p was characterized. The data suggest the polarity gradient inside the Sec14p cavity is a significant contributor to the driving molecular forces for extracting a phospholipid from the bilayer. Finally, the enhanced g-factor resolution of EPR at 130 and 220 GHz provides researchers with a spectroscopic tool to deconvolute two major contributions to the x-component of the nitroxide g-matrix: hydrogen-bond formation and local electrostatic effects.

摘要

Sec14p在体外促进磷脂酰肌醇(PtdIns)或磷脂酰胆碱(PtdCho)在脂质双层之间进行不依赖能量的转移,并且是出芽酵母酿酒酵母中主要的PtdIns/PtdCho转移蛋白。在此,我们采用多频高场电子顺磁共振(EPR)来分析可溶性蛋白质 - PtdCho复合物中与Sec14p结合的一系列多氧代标记的PtdCho分子的静电和氢键微环境。一种结构相似的化合物,溶解在一系列溶剂中的5 - 多氧代硬脂酸,用于实验校准。实验产生了在gx区域具有出色分辨率的双组分刚性极限130和220 GHz EPR光谱。这些组分被指定为氢键结合和非氢键结合的氮氧化物物种。使用这种双组分模型分析了与Sec14p结合的n - 多氧代 - PtdCho的部分分辨的130 GHz EPR光谱,并对两个参数进行了定量。首先,计算每个n - 多氧代 - PtdCho的氢键结合氮氧化物物种的分数。其次,表征了沿Sec14p磷脂结合腔的质子化分布。数据表明,Sec14p腔内的极性梯度是从双层中提取磷脂的驱动分子力的重要贡献因素。最后,130和220 GHz下EPR增强的g因子分辨率为研究人员提供了一种光谱工具,用于解卷积对氮氧化物g矩阵x分量的两个主要贡献:氢键形成和局部静电效应。