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Understanding the cation specific effects on the aqueous solubility of amino acids: from mono to polyvalent cations

机译:了解阳离子对氨基酸水溶性的特定影响:从单价阳离子到多价阳离子

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The interactions established by mono and polyvalent cations in natural media have important implications on the structure formation, function and physico-chemical behavior of biomolecules, playing therefore a critical role in biochemical processes. In order to further elucidate the molecular phenomena behind the cation specific effects in biological environments, and clarify the influence of the charge of the ions, solubility measurements and molecular dynamics simulations were performed for aqueous solutions of three amino acids (alanine, valine and isoleucine), in the presence of a series of inorganic salts comprising mono-, di- and trivalent cations (LiCl, Li2SO4, K2SO4, CaCl2, AlCl3 and Al-2(SO4)(3)). The evidence gathered indicates that the mechanism by which (salting-in inducing) polyvalent cations affect the solubility of amino acids in aqueous solutions is different from that of monovalent cations. A consistent and refined molecular description of the effect of the cation on the solubility of amino acids based on specific interactions of the cations with the negatively charged moieties of the biomolecules is here proposed.
机译:一价和多价阳离子在自然介质中建立的相互作用对生物分子的结构形成,功能和理化行为具有重要意义,因此在生物化学过程中起着至关重要的作用。为了进一步阐明在生物环境中阳离子特定作用背后的分子现象,并阐明离子电荷的影响,对三种氨基酸(丙氨酸,缬氨酸和异亮氨酸)的水溶液进行了溶解度测量和分子动力学模拟在一系列包含一价,二价和三价阳离子的无机盐(LiCl,Li2SO4,K2SO4,CaCl2,AlCl3和Al-2(SO4)(3))下存在。收集到的证据表明(盐析​​)多价阳离子影响氨基酸在水溶液中的溶解度的机制与单价阳离子不同。本文提出了基于阳离子与生物分子带负电部分的特异性相互作用对阳离子对氨基酸溶解度的影响的一致和完善的分子描述。

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