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Modeling Particle Hydrodynamic Transport in an Idealized Nanoscale Bio-Motor

机译:理想化纳米级生物电动机中的建模粒子流体动力学输送

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The supra-molecular motor, called the nuclear pore complex (NPC), controls the transport of all cellular material between the cytoplasm and the nucleus that occurs naturally in all biological cells. It consists of a large number of spatially organized proteins that, together with soluble transport factors, manage to export, import and exclude proteins with remarkable speed and fidelity. The NPC operates primarily via energy dependent processes, and performs some of the most vital functions required for the survival of a cell. In the presence of appropriate chemical stimuli, the NPC opens or closes, like a gate, and permits the flow of material into and out of the nucleus. The objective of this study is to better understand the hydrodynamic and particle transport characteristics of the NPC in order to potentially apply this highly effective structure to other nanoscale applications. An idealized model of NPC containing the central plug, bottom basket and top cytoplasm rings similar to a model described in the literature will be considered.
机译:Supra分子马达称为核孔隙络合物(NPC),控制在所有生物细胞中自然发生的细胞质与核之间的所有细胞材料的运输。它由大量的空间组织蛋白质组成,与可溶性传输因素一起,设法出口,进口和排除蛋白质,具有显着的速度和忠诚。 NPC主要通过能量依赖性过程操作,并对细胞存活所需的一些最重要的功能进行操作。在适当的化学刺激的存在下,NPC像浇口一样打开或关闭,并且允许材料流入和从细胞核中流出。本研究的目的是更好地理解NPC的流体动力学和颗粒传输特性,以便可能将这种高效的结构应用于其他纳米级应用。将考虑一个含有与文献中描述的模型类似的中央插头,底部篮子和顶部细胞质环的NPC理想化模型。

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