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非结构化蛋白质与多组分脂质膜位点特异性结合的矩阵形式理论

Matrix formalism for site-specific binding of unstructured proteins to multicomponent lipid membranes.

作者信息

Teif Vladimir B, Harries Daniel, Lando Dmitri Y, Ben-Shaul Avinoam

机构信息

Institute of Bioorganic Chemistry, Belarus National Academy of Sciences, Kuprevich 5/2, Minsk 220141, Belarus.

出版信息

J Pept Sci. 2008 Apr;14(4):368-73. doi: 10.1002/psc.994.

Abstract

We describe a new approach to calculate the binding of flexible peptides and unfolded proteins to multicomponent lipid membranes. The method is based on the transfer matrix formalism of statistical mechanics recently described as a systematic tool to study DNA-protein-drug binding in gene regulation. Using the energies of interaction of the individual polymer segments with different membrane lipid species and the scaling corrections due to polymer looping, we calculate polymer adsorption characteristics and the degree of sequestration of specific membrane lipids. The method is applied to the effector domain of the MARCKS (myristoylated alanine rich C kinase substrate) protein known to be involved in signal transduction through membrane binding. The calculated binding constants of the MARCKS(151-175) peptide and a series of related peptides to mixed PC/PS/PIP2 membranes are in satisfactory agreement with in vitro experiments.

摘要

我们描述了一种计算柔性肽和未折叠蛋白与多组分脂质膜结合的新方法。该方法基于统计力学的转移矩阵形式,最近被描述为研究基因调控中DNA-蛋白质-药物结合的系统工具。利用单个聚合物片段与不同膜脂种类的相互作用能以及聚合物环化引起的标度校正,我们计算了聚合物的吸附特性和特定膜脂的隔离程度。该方法应用于已知通过膜结合参与信号转导的MARCKS(肉豆蔻酰化富含丙氨酸的C激酶底物)蛋白的效应结构域。计算得到的MARCKS(151-175)肽和一系列相关肽与混合PC/PS/PIP2膜的结合常数与体外实验结果吻合良好。

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