Department of Chemistry, Kwangwoon University, Seoul 139-701, South Korea.
J Chem Phys. 2013 Jan 7;138(1):015103. doi: 10.1063/1.4773297.
The present study examines the effects of the model dependence, ionic strength, divalent ions, and hydrophobic interaction on the structural organization of the human neurofilament (NF) brush, using canonical ensemble Monte Carlo (MC) simulations of a coarse-grained model with the amino-acid resolution. The model simplifies the interactions between the NF core and the sidearm or between the sidearms by the sum of excluded volume, electrostatic, and hydrophobic interactions, where both monovalent salt ions and solvents are implicitly incorporated into the electrostatic interaction potential. Several important observations are made from the MC simulations of the coarse-grained model NF systems. First, the mean-field type description of monovalent salt ions works reasonably well in the NF system. Second, the manner by which the NF sidearms are arranged on the surface of the NF backbone core has little influence on the lateral extension of NF sidearms. Third, the lateral extension of the NF sidearms is highly affected by the ionic strength of the system: at low ionic strength, NF-M is most extended but at high ionic strength, NF-H is more stretched out because of the effective screening of the electrostatic interaction. Fourth, the presence of Ca(2+) ions induces the attraction between negatively charged residues, which leads to the contraction of the overall NF extension. Finally, the introduction of hydrophobic interaction does not change the general structural organization of the NF sidearms except that the overall extension is contracted.
本研究使用具有氨基酸分辨率的粗粒模型的正则系综蒙特卡罗(MC)模拟,考察了模型依赖性、离子强度、二价离子和疏水相互作用对人神经丝(NF)刷结构组织的影响。该模型通过排除体积、静电和疏水相互作用的总和来简化 NF 核心与侧臂之间或侧臂之间的相互作用,其中单价盐离子和溶剂都被隐含地纳入到静电相互作用势能中。从粗粒模型 NF 系统的 MC 模拟中得出了几个重要观察结果。首先,单价盐离子的均场类型描述在 NF 系统中表现相当好。其次,NF 侧臂在 NF 骨干核心表面的排列方式对 NF 侧臂的侧向延伸几乎没有影响。第三,NF 侧臂的侧向延伸受系统离子强度的高度影响:在低离子强度下,NF-M 伸展得最长,但在高离子强度下,NF-H 伸展得更开,因为静电相互作用的有效屏蔽。第四,Ca(2+)离子的存在诱导带负电荷的残基之间的吸引力,导致 NF 整体延伸收缩。最后,引入疏水相互作用除了整体延伸收缩外,不会改变 NF 侧臂的一般结构组织。