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首页> 外文期刊>Proteins: Structure, Function, and Genetics >New general approach for determining the solution structure of a ligand bound weakly to a receptor: structure of a fibrinogen Aalpha-like peptide bound to thrombin (S195A) obtained using NOE distance constraints and an ECEPP/3 flexible docking progra
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New general approach for determining the solution structure of a ligand bound weakly to a receptor: structure of a fibrinogen Aalpha-like peptide bound to thrombin (S195A) obtained using NOE distance constraints and an ECEPP/3 flexible docking progra

机译:确定弱结合受体的配体溶液结构的新通用方法:使用NOE距离限制和ECEPP / 3柔性对接程序获得的与凝血酶结合的纤维蛋白原Aalpha样肽的结构(S195A)

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A new approach incorporating flexible docking simulations and NMR data is presented for calculating the bound conformation of a ligand that interacts weakly with an enzyme. This approach consists of sampling directly the conformation of a flexible ligand inside a receptor active site containing surrounding flexible loops. To make this sampling efficient, a ligand-growing procedure has been adopted. Optimization of the ECEPP/3-plus-NOE constraint function is carried out by using a collective variable Monte Carlo minimization technique. Numerous energy minimizations are made possible for such a large system by using a Bezier splines energy grid technique. This new flexible docking approach was applied to determine the structure of a fibrinogen Aalpha-like peptide (7DFLAEGGGVRGPRV20) bound to an active site mutant of thrombin [thrombin(S195A)]. Structure calculations of the bound ligand, using 2D-transferred NOESY distance constraints in the DIANA program, showed that the N-terminal portion of the peptide (D7-R16) involves a chain reversal, whereas the C-terminal portion (G17-V20) adopts a fold that exists in several different orientations. In addition, the ECEPP/3 flexible docking package was used to assess the conformational variability of the ligand and surrounding 60D-insertion loop of thrombin. Amino acid residues (17-20) of the peptide interact with a region of the enzyme that exhibits broad specificity, with a preferred direction between the 60D-insertion loop and Pro37 of thrombin.
机译:提出了一种新方法,该方法结合了灵活的对接模拟和NMR数据,用于计算与酶弱相互作用的配体的结合构象。该方法包括直接采样包含周围柔性环的受体活性位点内的柔性配体的构象。为了使这种采样有效,已采用了配体生长程序。通过使用集体变量蒙特卡罗最小化技术对ECEPP / 3-plus-NOE约束函数进行优化。通过使用Bezier样条曲线能量网格技术,对于这样的大型系统,许多能量的最小化成为可能。这种新的灵活对接方法应用于确定与凝血酶[凝血酶(S195A)]的活性位点突变体结合的血纤蛋白原Aalpha样肽(7DFLAEGGGVRGPRV20)的结构。使用DIANA程序中2D转移的NOESY距离约束条件对结合的配体进行结构计算,结果表明,肽段的N端部分(D7-R16)涉及链反转,而C端部分(G17-V20)采用存在于多个不同方向的折痕。此外,使用ECEPP / 3灵活对接套件评估了凝血酶的配体和周围60D插入环的构象变异性。肽的氨基酸残基(17-20)与显示宽泛特异性的酶区域相互作用,在60D插入环和凝血酶Pro37之间具有优选方向。

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