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Coupling a dynein transport model with a model of anterograde and retrograde transport of intracellular organelles

机译:动力蛋白模型与细胞内细胞器顺行和逆行运输模型的耦合

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摘要

A model of fast axonal transport of organdies that accounts for dynein transport in an inactive state toward the axonal synapse is developed. It is assumed that anterograde transport of inactive dynein in an axon is powered by kinesin motors. It is further assumed that the probability of organelle attachment to a dynein motor is directly proportional to the concentration of free dynein motors available at a particular location in the axon. The results predicted by two models (the first one is that which incorporates dynein transport and the second one is the traditional model that does not incorporate dynein transport) are compared. The obtained results suggest that the availability of dynein motors in a particular location in an axon can be a factor limiting fast axonal transport.
机译:建立了一种快速的器官快速轴突转运模型,该模型解释了非活性状态下动力蛋白向轴突突的转运。假定轴突中非活性达因的顺行转运是由驱动蛋白驱动的。进一步假设细胞器附着在动力蛋白马达上的概率与轴突中特定位置处可用的动力蛋白浓度成正比。比较了两种模型预测的结果(第一种模型是结合了动力蛋白运输的模型,第二种是未结合了动力蛋白运输的传统模型)。获得的结果表明,在轴突中特定位置的动力蛋白马达的可用性可能是限制轴突快速运输的因素。

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