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An all atom force field for simulations of proteins and nucleic acids.一种用于蛋白质和核酸模拟的全原子力场。
J Comput Chem. 1986 Apr;7(2):230-252. doi: 10.1002/jcc.540070216.
2
A homology model of the pore domain of a voltage-gated calcium channel is consistent with available SCAM data.电压门控钙通道孔域的同源模型与现有 SCAM 数据一致。
J Gen Physiol. 2010 Mar;135(3):261-74. doi: 10.1085/jgp.200910288.
3
Docking flexible ligands in proteins with a solvent exposure- and distance-dependent dielectric function.使用溶剂暴露和距离相关介电函数对接蛋白质中的柔性配体。
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4
Structural modeling of calcium binding in the selectivity filter of the L-type calcium channel.钙结合在 L 型钙通道选择性滤器中的结构建模。
Eur Biophys J. 2010 Apr;39(5):839-53. doi: 10.1007/s00249-009-0574-2. Epub 2010 Jan 7.
5
Docking of calcium ions in proteins with flexible side chains and deformable backbones.钙离子与具有柔性侧链和可变形骨架的蛋白质的对接。
Eur Biophys J. 2010 Apr;39(5):825-38. doi: 10.1007/s00249-009-0561-7. Epub 2009 Nov 25.
6
Synergistic and antagonistic interactions between tetrodotoxin and mu-conotoxin in blocking voltage-gated sodium channels.河豚毒素与μ-芋螺毒素在阻断电压门控钠通道方面的协同和拮抗相互作用。
Channels (Austin). 2009 Jan-Feb;3(1):32-8. doi: 10.4161/chan.3.1.7500. Epub 2009 Jan 25.
7
Access and binding of local anesthetics in the closed sodium channel.局部麻醉药在封闭钠通道中的作用及结合
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8
Hydration properties of magnesium and calcium ions from constrained first principles molecular dynamics.基于受限第一性原理分子动力学的镁离子和钙离子的水合特性
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9
Calcium block of single sodium channels: role of a pore-lining aromatic residue.单个钠通道的钙阻断:孔道内衬芳香族残基的作用
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10
Sodium channels: ionic model of slow inactivation and state-dependent drug binding.钠通道:缓慢失活的离子模型与状态依赖性药物结合
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钠钙通道选择性滤器周围高度保守残基的可能作用。

Possible roles of exceptionally conserved residues around the selectivity filters of sodium and calcium channels.

机构信息

Department of Biochemistry and Biomedical Sciences, McMaster University, Hamilton, Ontario L8N 325, Canada.

出版信息

J Biol Chem. 2011 Jan 28;286(4):2998-3006. doi: 10.1074/jbc.M110.175406. Epub 2010 Nov 16.

DOI:10.1074/jbc.M110.175406
PMID:21081490
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3024794/
Abstract

In the absence of x-ray structures of sodium and calcium channels their homology models are used to rationalize experimental data and design new experiments. A challenge is to model the outer-pore region that folds differently from potassium channels. Here we report a new model of the outer-pore region of the NaV1.4 channel, which suggests roles of highly conserved residues around the selectivity filter. The model takes from our previous study (Tikhonov, D. B., and Zhorov, B. S. (2005) Biophys. J. 88, 184-197) the general disposition of the P-helices, selectivity filter residues, and the outer carboxylates, but proposes new intra- and inter-domain contacts that support structural stability of the outer pore. Glycine residues downstream from the selectivity filter are proposed to participate in knob-into-hole contacts with the P-helices and S6s. These contacts explain the adapted tetrodotoxin resistance of snakes that feed on toxic prey through valine substitution of isoleucine in the P-helix of repeat IV. Polar residues five positions upstream from the selectivity filter residues form H-bonds with the ascending-limb backbones. Exceptionally conserved tryptophans are engaged in inter-repeat H-bonds to form a ring whose π-electrons would facilitate passage of ions from the outer carboxylates to the selectivity filter. The outer-pore model of CaV1.2 derived from the NaV1.4 model is also stabilized by the ring of exceptionally conservative tryptophans and H-bonds between the P-helices and ascending limbs. In this model, the exceptionally conserved aspartate downstream from the selectivity-filter glutamate in repeat II facilitates passage of calcium ions to the selectivity-filter ring through the tryptophan ring. Available experimental data are discussed in view of the models.

摘要

在缺乏钠和钙通道的 X 射线结构的情况下,使用它们的同源模型来合理化实验数据并设计新的实验。一个挑战是对折叠方式不同于钾通道的外孔区域进行建模。本文报道了 NaV1.4 通道外孔区域的新模型,该模型提示了高度保守的选择性过滤器周围残基的作用。该模型借鉴了我们之前的研究(Tikhonov,D. B.,和 Zhorov,B. S.(2005)Biophys. J. 88, 184-197),采用 P 螺旋、选择性过滤器残基和外羧酸的一般排布,但提出了新的域内和域间接触,以支持外孔的结构稳定性。选择性过滤器下游的甘氨酸残基被提议参与与 P 螺旋和 S6 的 knob-into-hole 接触。这些接触解释了通过重复 IV 的 P 螺旋中异亮氨酸取代缬氨酸来适应吃有毒猎物的蛇的 Tetrodotoxin 抗性。选择性过滤器残基上游五个位置的极性残基与上升臂的骨架形成氢键。异常保守的色氨酸与重复间氢键结合形成一个环,其π电子将有助于离子从外羧酸到选择性过滤器的传递。从 NaV1.4 模型衍生的 CaV1.2 的外孔模型也通过异常保守的色氨酸环和 P 螺旋与上升臂之间的氢键得到稳定。在该模型中,重复 II 中选择性过滤器谷氨酸下游的异常保守天冬氨酸通过色氨酸环促进钙离子通过选择性过滤器环的传递。根据模型讨论了可用的实验数据。