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Molecular motors in neurons: transport mechanisms and roles in brain function, development, and disease.

机译:神经元中的分子运动:在脑功能,发育和疾病中的转运机制和作用。

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摘要

The kinesin, dynein, and myosin superfamily molecular motors have fundamental roles in neuronal function, plasticity, morphogenesis, and survival by transporting cargos such as synaptic vesicle precursors, neurotransmitter and neurotrophic factor receptors, and mRNAs within axons, dendrites, and synapses. Recent studies have begun to clarify the mechanisms of cargo selection and directional transport in subcellular compartments. Furthermore, molecular genetics has revealed unexpected roles for molecular motors in brain wiring, neuronal survival, neuronal plasticity, higher brain function, and control of central nervous system and peripheral nervous system development. Finally, it is also evident that molecular motors are critically involved in neuronal disease pathogenesis. Thus, molecular motor research is becoming an exciting frontier of neuroscience.
机译:驱动蛋白,动力蛋白和肌球蛋白超家族分子运动通过转运诸如突触小泡前体,神经递质和神经营养因子受体以及轴突,树突和突触内的mRNA等货物,在神经元功能,可塑性,形态发生和存活中具有基本作用。最近的研究已开始阐明亚细胞区室中货物选择和定向运输的机制。此外,分子遗传学还揭示了分子运动在脑部布线,神经元存活,神经元可塑性,更高的脑功能以及对中枢神经系统和周围神经系统发育的控制中的出乎意料的作用。最后,很明显分子运动也参与神经元疾病的发病机理。因此,分子运动研究正成为神经科学的令人兴奋的领域。

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