二肽
化学
氢键
分子动力学
静电学
分子
价(化学)
盐(化学)
化学物理
肽
计算化学
有机化学
物理化学
生物化学
作者
Xiangfeng Jia,Jingfei Chen,Wen Wu Xu,Qi Wang,Xiaofeng Wei,Yongshan Ma,Feiyong Chen,Guiqin Zhang
标识
DOI:10.1038/s41598-023-33166-3
摘要
Molecular dynamics simulation method was used to study the aggregation of Na and Ca salts in different concentrations of Naphthalene-dipeptide (2NapFF) solutions. The results show that high-valence Ca2+ triggers the formation of a gel at a certain dipeptide concentration, and the low-valence Na+ system follows the aggregation law of general surfactants. The results also show that hydrophobic and electrostatic forces are the main driving forces for the formation of dipeptide aggregates, and that hydrogen bonds do not play a major role in the formation of dipeptide solution aggregates. Hydrophobic and electrostatic effects are the main driving forces for the formation of gels in dipeptide solutions triggered by Ca2+. Electrostatic attraction drives Ca2+ to form a weak coordination with four oxygen atoms on two carboxyl groups, which causes the dipeptide molecules to form a gel with a branched network structure.
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