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Recent advances in branching mechanisms underlying neuronal morphogenesis

机译:神经元形态发生潜在的分支机制的最新进展

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摘要

Proper neuronal wiring is central to all bodily functions, sensory perception, cognition, memory, and learning. Establishment of a functional neuronal circuit is a highly regulated and dynamic process involving axonal and dendritic branching and navigation toward appropriate targets and connection partners. This intricate circuitry includes axo-dendritic synapse formation, synaptic connections formed with effector cells, and extensive dendritic arborization that function to receive and transmit mechanical and chemical sensory inputs. Such complexity is primarily achieved by extensive axonal and dendritic branch formation and pruning. Fundamental to neuronal branching are cytoskeletal dynamics and plasma membrane expansion, both of which are regulated via numerous extracellular and intracellular signaling mechanisms and molecules. This review focuses on recent advances in understanding the biology of neuronal branching.
机译:适当的神经元布线是所有身体功能,感官感知,认知,记忆和学习的核心。建立功能神经元电路是一种高度调节和动态的过程,涉及轴突和树枝状分支和导航到适当的目标和连接伴侣。这种复杂的电路包括腋窝突触形成,用效应细胞形成的突触连接,并且具有用于接收和传递机械和化学感官输入的广泛的树突树突树突。这些复杂性主要通过广泛的轴突和树突分支形成和修剪来实现。神经元分支的根本是细胞骨骼动力学和血浆膜膨胀,两者都通过多种细胞外和细胞内信号传导机制和分子调节。本综述侧重于理解神经元分支生物学的最新进展。

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