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Determination of electrostatic potentials at biological interfaces using electron-electron double resonance.

机译:使用电子-电子双共振测定生物界面处的静电势。

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摘要

A new general method for the determination of electrostatic potentials at biological surfaces is presented. The approach is based on measurement of the collision frequency of a charged nitroxide in solution with a nitroxide fixed to the surface at the point of interest. The collision frequency is determined with 14N:15N double label electron-electron double resonance (ELDOR). As a test, the method is shown to give values for phospholipid bilayer surface potentials consistent with the Gouy-Chapman theory, a simple model shown by many independent tests to accurately describe charged, planar surfaces. In addition, the method is applied to determine the electrostatic potential near the surface of DNA. The results indicate that the potential is significantly smaller than that predicted from Poisson-Boltzmann analysis, but is in qualitative agreement with that predicted by Manning's theory of counter ion condensation. The method is readily extended to measurement of surface potentials of proteins.
机译:介绍了一种确定生物表面静电势的新通用方法。该方法是基于测量溶液中带电荷的氮氧化物与感兴趣点处固定在表面的氮氧化物的碰撞频率。碰撞频率由14N:15N双标记电子-电子双共振(ELDOR)确定。作为测试,该方法显示出的磷脂双层表面电势值符合Gouy-Chapman理论,Gouy-Chapman理论是许多独立测试显示的简单模型,用于准确描述带电的平坦表面。另外,该方法用于确定DNA表面附近的静电势。结果表明该电势显着小于Poisson-Boltzmann分析所预测的电势,但与Manning的反离子缩合理论所预测的电势在质量上吻合。该方法很容易扩展到蛋白质表面电位的测量。

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