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How negatively charged proteins adsorb to negatively charged surfaces - a molecular dynamics study of BSA adsorption on silica

机译:带负电荷的蛋白质如何吸附至带负电荷的表面-BSA在二氧化硅上吸附的分子动力学研究

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摘要

How proteins adsorb to inorganic material surfaces is critically important for the development of new biotechnologies, since the orientation and structure of the adsorbed proteins impacts their functionality. Whilst it is known that many negatively charged proteins readily adsorb to negatively charged oxide surfaces, a detailed understanding of how this process occurs is lacking. In this work we study the adsorption of BSA, an important transport protein that is negatively charged at physiological conditions, to a model silica surface that is also negatively charged. We use fully atomistic Molecular Dynamics to provide detailed understanding of the non-covalent interactions that bind the BSA to the silica surface. Our results provide new insight into the competing roles of long-range electrostatics and short-range forces, and the consequences this has for the orientation and structure of the adsorbed proteins.
机译:蛋白质如何吸附到无机材料表面对于开发新的生物技术至关重要,因为吸附的蛋白质的方向和结构会影响其功能。虽然已知许多带负电荷的蛋白质容易吸附到带负电荷的氧化物表面,但是缺乏对该过程如何发生的详细理解。在这项工作中,我们研究了BSA(一种重要的转运蛋白,在生理条件下带负电荷)到模型二氧化硅表面(也带负电荷)的吸附。我们使用完全原子的分子动力学来提供对BSA与二氧化硅表面结合的非共价相互作用的详细了解。我们的结果为长距离静电和短距离作用力的竞争作用提供了新的见识,并为吸附蛋白质的取向和结构带来了后果。

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