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首页> 外文期刊>Computers in Biology and Medicine >Protein transport in the connecting cilium of a photoreceptor cell: Modeling the effects of bidirectional protein transitions between the diffusion-driven and motor-driven kinetic states
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Protein transport in the connecting cilium of a photoreceptor cell: Modeling the effects of bidirectional protein transitions between the diffusion-driven and motor-driven kinetic states

机译:蛋白质在感光细胞的连接纤毛中的运输:模拟在扩散驱动和运动驱动的动力学状态之间双向蛋白质跃迁的影响

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摘要

Physics of protein transport through the connecting cilium (CC) of a photoreceptor cell is a long-standing question in cellular biology. There is evidence implicating both molecular motor-driven and diffusion-driven modes of intracellular transport. Based on available experimental clues, this paper develops a new model for intraflagellar transport (IFT) of proteins synthesized in the inner segment and transported through the CC to the outer segment of a photoreceptor cell. The model accounts for the competition between two modes of protein transport: molecular motor-driven transport and diffusion. The obtained solutions made it possible to calculate how the number of protein molecules transported through the CC at a given time depends on their diffusivity. Modeling results were compared with published experimental estimates, and conclusions about possible contributions of diffusion to IFT were made.
机译:蛋白质通过感光细胞的连接纤毛(CC)传输的物理学是细胞生物学中一个长期存在的问题。有证据暗示分子马达驱动和扩散驱动模式的细胞内运输。根据现有的实验线索,本文开发了一种新模型,用于鞭毛内运输(IFT),该蛋白在内部片段中合成并通过CC传递到感光细胞的外部片段。该模型说明了蛋白质运输的两种模式之间的竞争:分子马达驱动的运输和扩散。所获得的解决方案使得有可能计算在给定时间通过CC转运的蛋白质分子的数量如何取决于其扩散率。将建模结果与已发布的实验估计值进行了比较,并得出了有关扩散对IFT的可能贡献的结论。

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