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Development of a Tuned Interfacial Force Field Parameter Set for the Simulation of Protein Adsorption to Silica Glass

机译:调整界面力场参数集的开发用于模拟蛋白质对二氧化硅玻璃的吸附

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摘要

Adsorption free energies for eight host–guest peptides (TGTG-X-GTGT, with X = N, D, G, K, F, T, W, and V) on two different silica surfaces [quartz (100) and silica glass] were calculated using umbrella sampling and replica exchange molecular dynamics and compared with experimental values determined by atomic force microscopy. Using the CHARMM force field, adsorption free energies were found to be overestimated (i.e., too strongly adsorbing) by about 5–9 kcal/mol compared to the experimental data for both types of silica surfaces. Peptide adsorption behavior for the silica glass surface was then adjusted using a modified version of the CHARMM program, which we call dual force-field CHARMM, which allows separate sets of nonbonded parameters (i.e., partial charge and Lennard-Jones parameters) to be used to represent intra-phase and inter-phase interactions within a given molecular system. Using this program, interfacial force field (IFF) parameters for the peptide-silica glass systems were corrected to obtain adsorption free energies within about 0.5 kcal/mol of their respective experimental values, while IFF tuning for the quartz (100) surface remains for future work. The tuned IFF parameter set for silica glass will subsequently be used for simulations of protein adsorption behavior on silica glass with greater confidence in the balance between relative adsorption affinities of amino acid residues and the aqueous solution for the silica glass surface.
机译:在两个不同的二氧化硅表面[石英(100)和石英玻璃]上的八个主体-客体肽(TGTG-X-GTGT,X = N,D,G,K,F,T,W和V)的吸附自由能使用伞式采样和复制品交换分子动力学来计算分子量,并与原子力显微镜确定的实验值进行比较。使用CHARMM力场,发现与两种类型的二氧化硅表面的实验数据相比,吸附自由能被高估了约5–9 kcal / mol(即吸附太强)。然后使用改进版的CHARMM程序(我们称为双力场CHARMM)调整了石英玻璃表面的肽吸附行为,该程序允许使用单独的一组非键合参数(即部分电荷和Lennard-Jones参数)表示给定分子系统内的相内和相间相互作用。使用该程序,对肽-二氧化硅玻璃系统的界面力场(IFF)参数进行了校正,以使其吸附自由能在其各自实验值的约0.5kcal / mol之内,而石英(100)表面的IFF调节仍待将来使用工作。随后将用于石英玻璃的调整后的IFF参数集用于模拟在石英玻璃上的蛋白质吸附行为,并在氨基酸残基的相对吸附亲和力和水溶液对石英玻璃表面的平衡之间取得更大的可信度。

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