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NMR-based molecular ruler for determining the depth of intercalants within the lipid bilayer Part II. The preparation of a molecular ruler

机译:基于NMR的分子尺,用于确定脂质双层中插入剂的深度(第二部分)。分子尺的制备

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We have previously shown how the location of an intercalant within the lipid bilayer can be qualitatively determined by using the excellent correlation that exists between the C-13 NMR chemical shift of a polarizable carbon (e.g., the carbonyl or nitronyl carbon) and the polarity (using the Dimroth-Reichardt's E-T(30) parameter) of the microenvironment in which that carbon resides. In a companion paper, we have determined criteria for reporter molecules that will assist us in converting this qualitative polarity data into quantitative Angstrom values. In the present paper, we report on our initial success in quantitatively mapping of the DMPC bilayer by linking two or more vertical points within a bilayer by both distance (in Angstroms) and E-T(30) polarity. The results correlated well with the values obtained using the "parallax method" of Erwin London. (C) 2008 Elsevier Ireland Ltd. All rights reserved.
机译:我们先前已经展示了如何通过使用可极化碳(例如,羰基或硝酰基碳)的C-13 NMR化学位移与极性(使用该碳所处的微环境的Dimroth-Reichardt的ET(30)参数)。在随附的论文中,我们确定了报告分子的标准,这些标准将帮助我们将定性极性数据转换为定量的Angstrom值。在本文中,我们报告了通过将双层中的两个或多个垂直点(距离(以埃为单位)和E-T(30)极性)连接在一起而在DMPC双层定量映射中取得的初步成功。结果与使用Erwin London的“视差方法”获得的值很好地相关。 (C)2008 Elsevier Ireland Ltd.保留所有权利。

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