Neurite Branching Regulated by Neuronal Cell Surface Molecules inCaenorhabditis elegans

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9
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9

초록

The high synaptic density in the nervous system results from the ability of neurites to branch. Neuronal cell surface molecules play central roles during neurite branch formation. The underlying mechanisms of surface molecule activity have often been elucidated using invertebrates with simple nervous systems. Here, we review recent advances in understanding the molecular mechanisms of neurite branching in the nematodeCaenorhabditis elegans. We discuss how cell surface receptor complexes link to and modulate actin dynamics to regulate dendritic and axonal branch formation. The mechanisms of neurite branching are often coupled with other neural circuit developmental processes, such as synapse formation and axon guidance,viathe same cell-cell surface molecular interactions. We also cover ectopic and sex-specific neurite branching inC. elegansin an attempt to illustrate the importance of these studies in contributing to our understanding of conserved cell surface molecule regulation of neurite branch formation.

키워드

neurite branchingneuronal cell surface moleculeCelegansreceptor complexactin dynamicsneural circuit formationKALLMANN-SYNDROMEC. ELEGANSNERVOUS-SYSTEMRECEPTORPROTEINPROMOTEGENEMORPHOGENESISARBORIZATIONEXPRESSION
제목
Neurite Branching Regulated by Neuronal Cell Surface Molecules inCaenorhabditis elegans
저자
Jin, HoYongKim, Byunghyuk
DOI
10.3389/fnana.2020.00059
발행일
2020-08-21
유형
Review
저널명
Frontiers in Neuroanatomy
14