...
首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Interfacial interactions of glutamate, water and ions with carbon nanopore evaluated by molecular dynamics simulations
【24h】

Interfacial interactions of glutamate, water and ions with carbon nanopore evaluated by molecular dynamics simulations

机译:通过分子动力学模拟评估谷氨酸,水和离子与碳纳米孔的界面相互作用

获取原文
获取原文并翻译 | 示例

摘要

Molecular dynamics simulations were used to assess the transport of glutamate, water and ions (Na+ and Cl-) in a single wall carbon narropore. The spatial profiles of Na+ and Cl- ions are largely determined by the pore wall charges. Co-ions are repelled whereas the counterions are attracted by the pore charges, but this 'rule' breaks down when the water concentration is set to a level significantly below that in the physiological bulk solution. In such cases water is less able to counteract the ion-wall interactions (electrostatic or non-electrostatic), co-ions are layered near the counter-ions attracted by the wall charges and are thus layered as counter-ions. Glutamate is concentrated near the pore wall even at physiological water concentration, and irrespective of whether the pore wall is neutral or charged (positively or negatively), and its peak levels are up to 40 times above mean values. The glutamate is thus always layered as a counter-ion. Layering of water near the wall is independent of charges on the pore wall, but its peak levels near the wall are 'only' 6-8 times above the pore mean values. However, if the mean concentration of water is significantly below the level in the physiological bulk solution, its layering is enhanced, whereas its concentration in the pore center diminishes to very low levels. Reasons for such a 'paradoxical' behavior of molecules (glutamate and water) are that the non-electrostatic interactions are (except at very short distances) attractive, and electrostatic interactions (between the charged atoms of the glutamate or water and the pore wall) are also attractive overall. Repulsive interactions (between equally charged atoms) exist, and they order the molecules near the wall, whereas in the pore center the glutamate (and water) angles are largely randomly distributed, except in the presence of an external electric field. Diffusion of molecules and ions is complex. The translational diffusion is in general both inhomogeneous and anisotropic. Non-electrostatic interactions (ion-wall, glutamate-wall or water-wall) powerfully influence diffusion. In the neutral natropore the effective axial diffusion constants of glutamate, water and Na+ and Cl- ions are all <10% of their values in the bulk, and the electrostatic interactions can reduce them further. Diffusion of molecules and ions is further reduced if the water concentration in the pore is low. Glutamate(-) is slowed more than water, and ions are reduced the most especially co-ions. In conclusion the interfacial interactions influence the spatial distribution of glutamate, water and ions, and regulate powerfully, in a complex manner and over a very wide range their transport through nanosize pores. (c) 2007 Elsevier B.V. All rights reserved.
机译:分子动力学模拟用于评估谷氨酸,水和离子(Na +和Cl-)在单壁碳narporepore中的传输。 Na +和Cl-离子的空间分布在很大程度上取决于孔壁电荷。 Co-离子被排斥,而抗衡离子被孔隙电荷吸引,但是当水的浓度设定为明显低于生理性本体溶液中的浓度时,这种“规则”就会分解。在这种情况下,水抵抗离子-壁相互作用(静电或非静电)的能力较弱,共离子在壁电荷吸引的抗衡离子附近分层,因此作为抗衡离子分层。即使在生理水浓度下,谷氨酸也浓缩在孔壁附近,而与孔壁是中性的还是带电的(正或负)无关,其峰值水平高达平均值的40倍。因此,谷氨酸总是作为抗衡离子分层。壁附近的水分层与孔壁上的电荷无关,但其在壁附近的峰值水平仅比孔平均值高6-8倍。但是,如果水的平均浓度显着低于生理性散装溶液中的水平,则其分层会增强,而其在孔中心的浓度将降低至非常低的水平。分子(谷氨酸和水)如此“自相矛盾”行为的原因是,非静电相互作用(很短距离除外)具有吸引力,而静电相互作用(在谷氨酸或水的带电原子与孔壁之间)具有吸引力。总体上也很有吸引力。存在排斥相互作用(在带相等电荷的原子之间),它们使分子排列在壁附近,而在孔中心,除了存在外部电场外,谷氨酸(和水)角在很大程度上是随机分布的。分子和离子的扩散是复杂的。平移扩散通常是不均匀的和各向异性的。非静电相互作用(离子-壁,谷氨酸-壁或水-壁)强烈影响扩散。在中性纳孔中,谷氨酸,水以及Na +和Cl-离子的有效轴向扩散常数在体积中均小于其值的10%,并且静电相互作用可进一步降低它们。如果孔中的水浓度低,则分子和离子的扩散会进一步减少。谷氨酸(-)的速度要比水慢得多,并且离子还原得最多,尤其是共离子。总之,界面相互作用影响谷氨酸,水和离子的空间分布,并以复杂的方式在很宽的范围内有力地调节其通过纳米孔的传输。 (c)2007 Elsevier B.V.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号