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Homology Model and Ligand Binding Interactions of the Extracellular Domain of the Human α4β2 Nicotinic Acetylcholine Receptor
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作者 Shu Mao Hui Wen Ng +5 位作者 Michael Orr Heng Luo Hao Ye Weigong Ge Weida Tong huixiao hong 《Journal of Biomedical Science and Engineering》 2016年第1期41-100,共60页
Addiction to nicotine, and possibly other tobacco constituents, is a major factor that contributes to the difficulties smokers face when attempting to quit smoking. Amongst the various subtypes of nicotinic acetylchol... Addiction to nicotine, and possibly other tobacco constituents, is a major factor that contributes to the difficulties smokers face when attempting to quit smoking. Amongst the various subtypes of nicotinic acetylcholine receptors (nAChRs), the α4β2 subtype plays an important role in mediating the addiction process. The characterization of human α4β2-ligand binding interactions provides a molecular framework for understanding ligand-receptor interactions, rendering insights into mechanisms of nicotine addiction and may furnish a tool for efficiently identifying ligands that can bind the nicotine receptor. Therefore, we constructed a homology model of human α4β2 nAChR and performed molecular docking and molecular dynamics (MD) simulations to elucidate the potential human α4β2-ligand binding modes for eleven compounds known to bind to this receptor. Residues V96, L97 and F151 of the α4 subunit and L111, F119 and F121 of the β2 subunit were found to be involved in hydrophobic interactions while residues S153 and W154 of the α4 subunit were involved in the formation of hydrogen bonds between the receptor and respective ligands. The homology model and its eleven ligand-bound structures will be used to develop a virtual screening program for identifying tobacco constituents that are potentially addictive. 展开更多
关键词 Nicotinic Acetylcholine Receptors Homology Model Ligand-Receptor Interactions
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毛细驱动海水淡化系统的热力学与水动力学分析 被引量:2
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作者 刘会晓 章先涛 +2 位作者 洪子鑫 江浩庆 胡雪蛟 《水处理技术》 CAS CSCD 北大核心 2017年第3期20-24,共5页
针对毛细驱动海水淡化系统建立了热力学-水动力学分析模型,分别对不同热流密度、运行高度和蒸汽管线长度工况下的系统运行特性进行了模拟分析。模拟结果与实验测量结果吻合较好。当系统在热流密度为4.2~34.0kW/m^2较大的参数范围内运行... 针对毛细驱动海水淡化系统建立了热力学-水动力学分析模型,分别对不同热流密度、运行高度和蒸汽管线长度工况下的系统运行特性进行了模拟分析。模拟结果与实验测量结果吻合较好。当系统在热流密度为4.2~34.0kW/m^2较大的参数范围内运行时,系统产水量可达6.3~50.8 kg/(m^2·h),蒸发温度可低至29.3~39.8℃。结果表明,蒸发器的压力是影响系统运行的主要因素,其主要受蒸发器高度和蒸汽管线长度的影响,且前者的影响更大。 展开更多
关键词 毛细力 海水淡化 热力学分析 水动力学分析
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