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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >A molecular modeling based method to predict elution behavior and binding patches of proteins in multimodal chromatography
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A molecular modeling based method to predict elution behavior and binding patches of proteins in multimodal chromatography

机译:基于分子建模的方法预测多峰色谱中蛋白质的洗脱行为和结合斑

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Multimodal (MM) chromatography provides a powerful means to enhance the selectivity of protein separations by taking advantage of multiple weak interactions that include electrostatic, hydrophobic and van der Waals interactions. In order to increase our understanding of such phenomena, a computationally efficient approach was developed that combines short molecular dynamics simulations and continuum solvent based coarse-grained free energy calculations in order to study the binding of proteins to Self Assembled Monolayers (SAM) presenting MM ligands. Using this method, the free energies of protein MM SAM binding over a range of incident orientations of the protein can be determined. The resulting free energies were then examined to identify the more "strongly bound" orientations of different proteins with two multimodal surfaces. The overall free energy of protein-MM surface binding was then determined and correlated to retention factors from isocratic chromatography. This correlation, combined with analytical expressions from the literature, was then employed to predict protein gradient elution salt concentrations as well as selectivity reversals with different MM resin systems. Patches on protein surfaces that interacted strongly with MM surfaces were also identified by determining the frequency of heavy atom contacts with the atoms of the MM SAMs. A comparison of these patches to Electrostatic Potential and hydrophobicity maps indicated that while all of these patches contained significant positive charge, only the highest frequency sites also possessed hydrophobicity. The ability to identify key binding patches on proteins may have significant impact on process development for the separation of bioproduct related impurities. (C) 2017 Elsevier B.V. All rights reserved.
机译:多模式(MM)色谱法提供了一种强大的方法,以通过利用包括静电,疏水和范德华相互作用的多种弱相互作用来增强蛋白质分离的选择性。为了提高我们对这种现象的理解,开发了一种计算有效的方法,其结合了短的分子动力学模拟和连续溶剂的粗粒的自由能量计算,以研究蛋白质与自组装单层(SAM)呈现Mm配体的结合。使用该方法,可以确定蛋白质MM SAM在蛋白质的入射取向范围内结合的自由能。然后检查所得到的游离能量以识别不同蛋白质的越“强烈粘合”的取向,具有两个多峰面。然后测定蛋白质-MM表面结合的总体自由能,并与来自等离子色谱法的保留因子相关。然后使用与来自文献的分析表达相结合的这种相关性以预测蛋白质梯度洗脱盐浓度以及用不同MM树脂系统的选择性逆转。还通过确定与MM SAM的原子的重物触点的频率来鉴定与MM表面强烈相互作用的蛋白质表面上的贴剂。这些贴片与静电电位和疏水性图的比较表明,虽然所有这些贴片包含显着的正电荷,但只有最高频率的位点也具有疏水性。鉴定蛋白质上的关键结合斑块的能力可能对生物产物相关杂质分离的过程开发产生重大影响。 (c)2017年Elsevier B.V.保留所有权利。

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