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Validation of Depth-Dependent Fluorescence Quenching in Membranes by Molecular Dynamics Simulation of Tryptophan Octyl Ester in POPC Bilayer

机译:通过色氨酸辛基酯在POPC双层中的分子动力学模拟验证膜中依赖深度的荧光猝灭

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摘要

Depth-dependent fluorescence quenching is an important tool for studying the penetration of proteins and peptides into lipid bilayers. Extracting quantitative information from quenching data is, however, complicated by (1) a limited number of experimentally available quenchers and (2) by thermal disorder resulting in broad distributions of the transverse positions of both quenchers and fluorophores. Here we validate and refine a general approach to determining the location of a fluorescent probe along the bilayer normal from quenching data, based on a molecular dynamics (MD) simulation of a model compound, tryptophan octyl ester (TOE), in a 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphocholine (POPC) bilayer. The TOE ring was found to lie deeply within the bilayer (most probable position of 13.3 Å and center-of-weight of the distribution of 14.8 Å from the bilayer center) and it was very broadly distributed (with 9 Å depth distribution width), which is consistent with previous experimental observations. The depth-dependent quenching profiles were simulated by treating carbon atoms of the lipid acyl chain of POPC as “pseudo-quenchers” and calculating appropriate transverse overlaps and collision rates with indole atoms of TOE. These simulated quenching profiles were well fitted by a Gaussian function of depth, as is routinely done with experimental data subjected to the Distribution Analysis procedure (Methods Enzymol. 1997, 278, 462–473). Comparison of the collisional pseudo-quenching profiles with the actual profiles of the indole moiety of TOE allows tests of the validity of the data analysis and identification of the possible sources of error in calculating depths of membrane penetration from quenching data.
机译:深度依赖性荧光猝灭是研究蛋白质和肽渗透到脂质双层中的重要工具。但是,从淬灭数据中提取定量信息会变得很复杂,因为(1)数量有限的实验可用淬灭剂,以及(2)由于热失调,导致淬灭剂和荧光团的横向位置分布较宽。在此,我们基于模型化合物色氨酸辛基酯(TOE)在1-棕榈酰基中的分子动力学(MD)模拟,验证并完善了一种从淬灭数据确定荧光探针沿双层法线定位的通用方法。 -2-油酰基-sn-甘油-3-磷酸胆碱(POPC)双层。发现TOE环深埋在双层内(最可能的位置为13.3Å,距双层中心的重心为14.8Å),并且分布非常广泛(深度分布宽度为9Å),这与以前的实验观察结果一致。通过将POPC脂酰基链的碳原子视为“拟猝灭剂”,并计算与TOE吲哚原子的适当横向重叠和碰撞速率,来模拟深度相关的猝灭曲线。这些模拟的淬火曲线通过深度的高斯函数很好地拟合,这是按照分布分析程序(Methods Enzymol。1997,278,462-473)进行的实验数据常规完成的。将碰撞伪猝灭曲线与TOE的吲哚部分的实际曲线进行比较,可以测试数据分析的有效性,并可以确定根据淬灭数据计算出膜渗透深度时可能的误差来源。

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