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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Implicit Modeling of the Impact of Adsorption on Solid Surfaces for Protein Mechanics and Activity with a Coarse-Grained Representation
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Implicit Modeling of the Impact of Adsorption on Solid Surfaces for Protein Mechanics and Activity with a Coarse-Grained Representation

机译:一种粗粒模拟蛋白力学和活性吸附对固体表面的影响的隐含模拟

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摘要

Surface immobilized enzymes play a key role in numerous biotechnological applications such as biosensors, biofuel cells, or biocatalytic synthesis. As a consequence, the impact of adsorption on the enzyme structure, dynamics, and function needs to be understood on the molecular level as it is critical for the improvement of these technologies. With this perspective in mind, we used a theoretical approach for investigating local protein flexibility on the residue scale that couples a simplified protein representation with an elastic network and Brownian dynamics simulations. The impact of protein adsorption on a solid surface is implicitly modeled via additional external constraints between the residues in contact with the surface. We first performed calculations on a redox enzyme, bilirubin oxidase (BOD) from M. verrucaria, to study the impact of adsorption on its mechanical properties. The resulting rigidity profiles show that, in agreement with the available experimental data, the mechanical variations observed in the adsorbed BOD will depend on its orientation and its anchor residues (i.e., residues that are in contact with the functionalized surface). Additional calculations on ribonuclease A and nitroreductase shed light on how seemingly stable adsorbed enzymes can nonetheless display an important decrease in their catalytic activity resulting from a perturbation of their mechanics and internal dynamics.
机译:表面固定化酶在许多生物传感器,生物传感器,生物燃料细胞或生物催化合成之类的生物技术应用中起着关键作用。因此,需要在分子水平上理解吸附对酶结构,动力学和功能的影响,因为这对于改善这些技术至关重要。通过考虑到这种观点,我们使用了一种对残留量表的局部蛋白质灵活性来研究与弹性网络和布朗动力学模拟的简化蛋白质表示来研究局部蛋白质灵活性的理论方法。通过与表面接触的残基之间的额外外部约束,蛋白质吸附对固体表面的影响。我们首先对来自M.Verrucaria的氧化还原酶,胆红素氧化酶(BOD)进行计算,研究吸附对其机械性能的影响。得到的刚性轮廓表明,与可用的实验数据一致,在吸附的BOD中观察到的机械变化将取决于其取向及其锚定残留物(即,与官能化表面接触的残基)。关于核糖核酸酶A和硝化酶脱光的额外计算似乎似乎稳定的吸附酶可以仍然可以在其力学和内部动力学的扰动中显示出催化活性的重要降低。

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