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Drive the Car(go)s—New Modalities to Control Cargo Trafficking in Live Cells

机译:驾驶汽车—控制活细胞中货物运输的新方式

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摘要

Synaptic transmission is a fundamental molecular process underlying learning and memory. Successful synaptic transmission involves coupled interaction between electrical signals (action potentials) and chemical signals (neurotransmitters). Defective synaptic transmission has been reported in a variety of neurological disorders such as Autism and Alzheimer’s disease. A large variety of macromolecules and organelles are enriched near functional synapses. Although a portion of macromolecules can be produced locally at the synapse, a large number of synaptic components especially the membrane-bound receptors and peptide neurotransmitters require active transport machinery to reach their sites of action. This spatial relocation is mediated by energy-consuming, motor protein-driven cargo trafficking. Properly regulated cargo trafficking is of fundamental importance to neuronal functions, including synaptic transmission. In this review, we discuss the molecular machinery of cargo trafficking with emphasis on new experimental strategies that enable direct modulation of cargo trafficking in live cells. These strategies promise to provide insights into a quantitative understanding of cargo trafficking, which could lead to new intervention strategies for the treatment of neurological diseases.
机译:突触传递是基础学习和记忆的基本分子过程。成功的突触传递涉及电信号(动作电位)和化学信号(神经递质)之间的耦合相互作用。据报道,自闭症和阿尔茨海默氏病等多种神经系统疾病均存在有缺陷的突触传递。在功能性突触附近丰富了大分子和细胞器。尽管一部分大分子可以在突触处局部产生,但是大量的突触成分,尤其是膜结合受体和肽神经递质,需要主动的转运机制才能到达其作用部位。这种空间重新定位是由耗能的,运动蛋白驱动的货物运输介导的。适当规范的货物运输对神经元功能(包括突触传递)至关重要。在这篇综述中,我们讨论了货物运输的分子机制,重点是能够直接调节活细胞中货物运输的新实验策略。这些策略有望为对货运的定量理解提供见识,从而可能导致治疗神经系统疾病的新干预策略。

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