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Effects of Non-specific and Specific Solvation on Adsorption of BPTI on Au Surface: Insight from Molecular Dynamics Simulation
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作者 Wei Yang Li-yun Zhang +2 位作者 Meng-long Li Xue-mei Pu Nan-rong Zhao 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2013年第5期558-568,I0003,I0004,共13页
Proteins adsorption at solid surfaces are of paramount important for many natural processes. However, the role of specific water in influencing the adsorption process has not been well understood. We used molecular dy... Proteins adsorption at solid surfaces are of paramount important for many natural processes. However, the role of specific water in influencing the adsorption process has not been well understood. We used molecular dynamics simulation to study the adsorption of BPTI on Au surface in three water environments (dielectric constant model, partial and full solvation models). The result shows that a fast and strong adsorption can occur in the dielectric environment, which leads to significant structure changes, as confirmed by great deviation from the crystal structure, largely spreading along the Au surface, rapid lose in all secondary structures and the great number of atoms in contact with the surface. Compared to the dielectric model, slower adsorption and fewer changes in the calculated properties above are observed in the partial solvation system since the specific water layer weakens the adsorption effects. However, in the partial solvation system, the adsorption of polar Au surface causes a significant decrease in the specific hydration around the protein, which still results in large structure changes similar to the dielectric system, but with much less adsorption extent. Enough water molecules in the full solvation system could allow the protein to rotate, and to large extent preserve the protein native structure, thus leading to the slowest and weakest adsorption. On the whole, the effects of non-specific and specific solvation on the protein structure and adsorption dynamics are significantly different, highlighting the importance of the specific water molecule in the protein adsorption. 展开更多
关键词 ADSORPTION Au surface Implicit water Partial solvation Full solvation
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姜黄素-赖氨酸共晶在无水乙醇中的热力学研究 被引量:3
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作者 陈晓红 迟宗良 +1 位作者 秦昆明 蔡宝昌 《中国现代应用药学》 CAS CSCD 2017年第6期871-875,共5页
目的考察在三元体系中各条件下的平衡状态,计算姜黄素共晶的相关热力学常数,探讨无水乙醇作为特异性溶剂的合理性。方法采用溶液法分别测定姜黄素在不同温度下、不同浓度赖氨酸的无水乙醇中的溶解度,通过数学推导,得出姜黄素共晶的热力... 目的考察在三元体系中各条件下的平衡状态,计算姜黄素共晶的相关热力学常数,探讨无水乙醇作为特异性溶剂的合理性。方法采用溶液法分别测定姜黄素在不同温度下、不同浓度赖氨酸的无水乙醇中的溶解度,通过数学推导,得出姜黄素共晶的热力学常数。结果绘制了姜黄素-赖氨酸-无水乙醇的三元相图,并求得了K_(sp)、K_(ll)、△G°、△H及△S等热力学参数。结论无水乙醇可以作为特异性溶剂用于提取姜黄素共晶中混杂的姜黄素单体。 展开更多
关键词 姜黄素-赖氨酸共晶 无水乙醇 热力学 特异性溶剂
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