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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Adsorption of Amino Acids on Gold: Assessing the Accuracy of the GolP-CHARMM Force Field and Parametrization of Au-S Bonds
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Adsorption of Amino Acids on Gold: Assessing the Accuracy of the GolP-CHARMM Force Field and Parametrization of Au-S Bonds

机译:氨基酸对金的吸附:评估GOLP-Charmm力场的准确性和AU-S键的载玻

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摘要

The interaction of amino acids with metal electrodes plays a crucial role in bioelectrochemistry and the emerging field of bionanoelectronics. Here we present benchmark calculations of the adsorption structure and energy of all natural amino acids on Au(111) in vacuum using a van-der-Waals density functional (revPBE-vdW) that showed good performance on the S22 set of weakly bound dimers (mean relative unsigned error (MRUE) wrt CCSD(T)/CBS = 13.3%) and adsorption energies of small organic molecules on Au(111) (MRUE wrt experiment = 11.2%). The vdW-DF results are then used to assess the accuracy of a popular force field for Au-amino acid interactions, GolP-CHARMM, which explicitly describes image charge interactions via rigid-rod dipoles. We find that while the force field underestimates adsorption distances, it does reproduce the binding energy rather well (MRUE wrt revPBE-vdW = 11.3%) with the MRUE decreasing in the order Cys, Met amines aliphatic carboxylic aromatic. We also present a parametrization of the bonding interaction between sulfur-containing molecules and the Au(111) surface and report force field parameters that are compatible with Go1P-CHARMM. We believe the vdW-DF calculations presented herein will provide useful reference data for further force field development, and that the new Au-S bonding parameters will enable improved simulations of proteins immobilized on Au-electrodes via S-linkages.
机译:氨基酸与金属电极的相互作用在生物电化学和毕通电中的新兴领域起着至关重要的作用。在这里,我们使用在S22弱束缚二聚体组上显示出良好的性能(Revpbe-VDW),在真空中呈现Au(111)上所有天然氨基酸的吸附结构和能量的基准计算。平均相对无符号误差(MRUE)WRT CCSD(T)/ CBS = 13.3%)和Au(111)上的小有机分子的吸附能量(MRUE WRT实验= 11.2%)。然后用于评估VOLP-CHARMM的普通氨基酸相互作用的流行力场的精度,该vDW-DF结果是通过刚性杆偶极显式描述图像电荷相互作用的普通氨基酸相互作用。我们发现,虽然力场低估了吸附距离,但它确实再现了与顺序Cys的MRUE减少的绑定能量相当良好(MRUE WRT Revpbe-VDW = 11.3%)。胺& aliphatic&羧基&芳香。我们还介绍了含硫分子和Au(111)表面之间的粘合相互作用的参数化,并报告与GO1P-Charmm兼容的力场参数。我们认为这里提出的VDW-DF计算将提供有用的参考数据以进一步的力现场显影,并且新的AU-S键合参数将通过S键可以改善固定在Au-电极上固定的蛋白质的模拟。

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