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Smart motors and cargo steering drive kinesin-mediated selective transport

机译:智能电机和货物转向驱动器Kinesin介导的选择性运输

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摘要

Neurons are polarized cells, with dendrites and axons that require different complements of membrane proteins to fulfill their specialized functions. Membrane proteins are synthesized in the somatodendritic domain and delivered to their target membranes via long-range vesicle transport. Most anterograde vesicle transport is mediated by kinesin motors, but it is unclear how kinesins are targeted to axons or dendrites. Two main models have been proposed to explain kinesin selectivity. In the smart motor model, kinesin selectivity is conferred by a preference of the kinesin motor domain for specific subsets of microtubules. In the cargo steering model, kinesin selectivity is modulated by the vesicular cargo to which the motor is bound. We evaluate the evidence for both models and conclude that while the smart motor model may explain axonal selectivity, cargo steering is required for dendritic selectivity. Future work will determine the relative contributions of these models to polarized transport in living neurons.
机译:神经元是偏振细胞,具有树枝状和轴突,需要膜蛋白的不同补充以满足其专业功能。膜蛋白在Sematodentitis结构域中合成,并通过远程囊泡转运递送至其靶膜。大多数Anterograde囊泡运输由Kinesin Motors介导,但目前尚不清楚Kinesins如何针对轴突或树突。已经提出了两种主要模型来解释Kinesin选择性。在智能电动机模型中,Kinesin选择性通过Kinesin Motor域的优先考虑微管的特定子集来赋予Kinesin选择性。在货物转向模型中,Kinesin选择性由电动机绑定的凹凸货物调制。我们评估两种模型的证据,并得出结论,虽然智能电机模型可以解释轴突选择性,树突式选择性需要货物转向。未来的工作将决定这些模型对活神经元偏振的相对贡献。

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