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首页> 外文期刊>New Journal of Chemistry >Characterization of selective binding of biologically relevant inorganic ions with the proline zwitterion by 3D-RISM theory
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Characterization of selective binding of biologically relevant inorganic ions with the proline zwitterion by 3D-RISM theory

机译:通过3D-RISM理论表征生物学相关的无机离子与脯氨酸两性离子的选择性结合

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摘要

Selective binding between the charged groups of the proline zwitterion (Pro-ZW) and several biologically relevant mono-and divalent inorganic ions (Na+, K+, Mg2+, Ca2+, Cl-) was studied over a wide range of electrolyte concentrations using integral equation theory in the three-Dimensional Reference Interaction Site Model (3D-RISM) approach. These model samples mimic ion pairing between charged functional groups at protein surfaces and physiologically relevant ions. The effects of salt concentration and chemical nature of the inorganic ion on the stability of the formed ion-molecular associates are analyzed. Additionally, the possible mechanism of ion binding and the structure of the formed aggregates are discussed.
机译:使用积分方程理论研究了在宽范围的电解质浓度下脯氨酸两性离子(Pro-ZW)的带电基团与几种生物学上相关的一价和二价无机离子(Na +,K +,Mg2 +,Ca2 +,Cl-)之间的选择性结合在三维参考互动网站模型(3D-RISM)方法中。这些模型样本模拟了蛋白质表面带电官能团与生理相关离子之间的离子配对。分析了盐浓度和无机离子的化学性质对形成的离子-分子缔合体稳定性的影响。另外,讨论了离子结合的可能机理和形成的聚集体的结构。

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