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二价阳离子与胰岛素的结合:毛细管电泳和分子模拟。

Binding of Divalent Cations to Insulin: Capillary Electrophoresis and Molecular Simulations.

机构信息

Institute of Organic Chemistry and Biochemistry , Czech Academy of Sciences , Flemingovo nám. 542/2 , 160 00 Prague , Czech Republic.

J. Heyrovský Institute of Physical Chemistry , Czech Academy of Sciences , v.v.i, Dolejškova 2155/3 , 182 23 Prague 8 , Czech Republic.

出版信息

J Phys Chem B. 2018 May 31;122(21):5640-5648. doi: 10.1021/acs.jpcb.7b12097. Epub 2018 Feb 10.

Abstract

In the present study, we characterize the binding of divalent cations to insulin in aqueous salt solutions by means of capillary electrophoresis and molecular dynamics simulations. The results show a strong pH dependence. At low pH, at which all the carboxylate groups are protonated and the protein has an overall positive charge, all the cations exhibit only weak and rather unspecific interactions with insulin. In contrast, at close to neutral pH, when all the carboxylate groups are deprotonated and negatively charged, the charge-neutralizing effect of magnesium, calcium, and zinc, in particular, on the electrophoretic mobility of insulin is significant. This is also reflected in the results of molecular dynamics simulations showing accumulation of cations at the protein surface, which becomes smaller in magnitude upon effective inclusion of electronic polarization via charge rescaling.

摘要

在本研究中,我们通过毛细管电泳和分子动力学模拟来描述二价阳离子在水盐溶液中与胰岛素的结合。结果表明,这种结合具有很强的 pH 依赖性。在低 pH 下,所有的羧酸基团都被质子化,蛋白质整体带正电荷,所有的阳离子与胰岛素的相互作用都很弱,而且相当非特异性。相比之下,在接近中性 pH 时,所有的羧酸基团都去质子化并带负电荷,镁、钙和锌的中和电荷作用,特别是对胰岛素的电泳迁移率的影响是显著的。这一点也反映在分子动力学模拟的结果中,表明阳离子在蛋白质表面的积累,通过电荷重新缩放来有效地包含电子极化,其数量会变小。

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