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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Coarse-Graining the Accessible Surface and the Electrostatics of Proteins for Protein-Protein Interactions
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Coarse-Graining the Accessible Surface and the Electrostatics of Proteins for Protein-Protein Interactions

机译:粗粒可及性表面和蛋白质的静电作用,用于蛋白质-蛋白质相互作用

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摘要

This study is concerned with the development and test of a coarse-grained representation specifically constructed for proteins and peptides,where each amino acid of the sequence is represented by a charged dipolar sphere.The model was parametrized from the physical properties of individual amino acids and applied to the study of the interaction between solvated proteins.Using an implicit solvent approach and our coarse-grained model,we computed the potential of mean force for the association of well-known proteins,such as the Cu-Zn superoxide dismutase,lysozyme,and basic pancreatic trypsin inhibitor,and a peptide,A beta_7.The coarse-grained potentials of mean force were systematically compared with their all-atoms counterpart.For both the polar and nonpolar contributions to this potential,the results of our calculations show that the coarse-grained model provides a good approximation of the all-atoms potential when the distance between the molecule surfaces is greater than a solvent molecular diameter.For shorter distances and for specific interactions,like those found between the SOD monomers,the electrostatic desolvation effect appears to be underestimated by our coarsegrained representation.The possibility of a very short range all-atom refinement to better describe the interaction at close contact is explored.We find also that the most important contribution to the association free-energy comes from the hydrophobic solvent accessible surface area term,which is well reproduced by our coarse-grained approach.
机译:这项研究与专门为蛋白质和肽构建的粗粒度表示法的开发和测试有关,其中序列的每个氨基酸均由带电的偶极球表示。该模型是根据单个氨基酸和运用隐式溶剂法和我们的粗粒度模型,我们计算了平均力对知名蛋白质(如铜锌超氧化物歧化酶,溶菌酶,胰蛋白酶和碱性胰蛋白酶抑制剂,以及一种肽A beta_7。系统比较了平均力的粗粒度电势和所有原子的电势。对于这种电势的极性和非极性贡献,我们的计算结果表明,当分子表面之间的距离大于溶剂分子的距离时,粗粒度模型可以很好地近似所有原子的电势分子直径。对于较短的距离和特定的相互作用,例如在SOD单体之间发现的那些,静电去溶剂化作用似乎被我们的粗粒度表示低估了。非常短距离的全原子细化以更好地描述近距离相互作用的可能性我们还发现,缔合自由能最重要的贡献来自疏水性溶剂可及的表面积术语,我们的粗粒度方法很好地再现了这一术语。

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