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Contributions to the binding free energy of ligands to avidin and streptavidin.

机译:配体与抗生物素蛋白和抗生蛋白链菌素的结合自由能的贡献。

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The free energy of binding of a ligand to a macromolecule is here formally decomposed into the (effective) energy of interaction, reorganization energy of the ligand and the macromolecule, conformational entropy change of the ligand and the macromolecule, and translational and rotational entropy loss of the ligand. Molecular dynamics simulations with implicit solvation are used to evaluate these contributions in the binding of biotin, biotin analogs, and two peptides to avidin and streptavidin. We find that the largest contribution opposing binding is the protein reorganization energy, which is calculated to be from 10 to 30 kcal/mol for the ligands considered here. The ligand reorganization energy is also significant for flexible ligands. The translational/rotational entropy is 4.5-6 kcal/mol at 1 M standard state and room temperature. The calculated binding free energies are in the correct range, but the large statistical uncertainty in the protein reorganization energy precludes precise predictions. For some complexes, the simulations show multiple binding modes, different from the one observed in the crystal structure. This finding is probably due to deficiencies in the force field but may also reflect considerable ligand flexibility.
机译:配体与大分子结合的自由能在这里被正式分解为相互作用的(有效)能,配体与大分子的重组能,配体与大分子的构象熵变以及分子的平移和旋转熵损失配体。具有隐性溶剂化作用的分子动力学模拟可用于评估生物素,生物素类似物和两种肽与抗生物素蛋白和链霉亲和素结合中的这些作用。我们发现反对结合的最大贡献是蛋白质重组能,对于此处考虑的配体,其重组能量经计算为10至30 kcal / mol。配体重组能对于柔性配体也很重要。在1 M标准状态和室温下,平移/旋转熵为4.5-6 kcal / mol。计算的结合自由能在正确的范围内,但是蛋白质重组能的巨大统计不确定性妨碍了精确的预测。对于某些配合物,模拟显示出多种结合模式,与在晶体结构中观察到的不同。该发现可能是由于力场的缺陷,但也可能反映出相当大的配体柔性。

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