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首页> 外文期刊>Protein Science: A Publication of the Protein Society >Multiple binding modes for palmitate to barley lipid transfer protein facilitated by the presence of proline 12
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Multiple binding modes for palmitate to barley lipid transfer protein facilitated by the presence of proline 12

机译:脯氨酸12的存在促进棕榈酸酯与大麦脂质转移蛋白的多种结合模式

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摘要

Molecular dynamics simulations have been used to characterise the binding of the fatty acid ligand palmitate in the barley lipid transfer protein 1 (LTP) internal cavity. Two different palmitate binding modes (1 and 2), with similar protein-ligand interaction energies, have been identified using a variety of simulation strategies. These strategies include applying experimental protein-ligand atom-atom distance restraints during the simulation, or protonating the palmitate ligand, or using the vacuum GROMOS 54B7 force-field parameter set for the ligand during the initial stages of the simulations. In both the binding modes identified the palmitate carboxylate head group hydrogen bonds with main chain amide groups in helix A, residues 4 to 19, of the protein. In binding mode 1 the hydrogen bonds are to Lys 11, Cys 13, and Leu 14 and in binding mode 2 to Thr 15, Tyr 16, Val 17, Ser 24 and also to the OH of Thr 15. In both cases palmitate binding exploits irregularity of the intrahelical hydrogen-bonding pattern in helix A of barley LTP due to the presence of Pro 12. Simulations of two variants of barley LTP, namely the single mutant Pro12Val and the double mutant Pro12Val Pro70Val, show that Pro 12 is required for persistent palmitate binding in the LTP cavity. Overall, the work identifies key MD simulation approaches for characterizing the details of protein-ligand interactions in complexes where NMR data provide insufficient restraints. VC 2012 Wiley Periodicals, Inc.
机译:分子动力学模拟已被用来表征大麦脂质转移蛋白1(LTP)内部空腔中脂肪酸配体棕榈酸酯的结合。已使用多种模拟策略确定了具有相似蛋白质-配体相互作用能的两种不同的棕榈酸酯结合模式(1和2)。这些策略包括在模拟过程中应用实验性蛋白质-配体原子-原子距离限制,或使棕榈酸酯配体质子化,或在模拟的初始阶段为配体使用真空GROMOS 54B7力场参数集。在两种结合方式中,确定了棕榈酸酯的羧酸酯头部基团与螺旋A中蛋白质的4至19位残基的主链酰胺基的氢键。在结合模式1中,氢键与Lys 11,Cys 13和Leu 14结合,在结合模式2中与Thr 15,Tyr 16,Val 17,Ser 24和Thr 15的OH结合。大麦LTP螺旋A的螺旋内氢键键合模式由于Pro 12的存在而导致的不规则性。对大麦LTP的两个变体(即单突变体Pro12Val和双突变体Pro12Val Pro70Val)的仿真表明,持久性需要Pro 12 LTP腔中的棕榈酸酯结合。总的来说,这项工作确定了关键的MD模拟方法,用于表征NMR数据不能提供足够约束的复合物中蛋白质-配体相互作用的细节。 VC 2012 Wiley期刊公司

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