National Institute of Neurological Disorders and Stroke, National Institutes of Health, Bethesda, MD, 20892, USA.
Nat Commun. 2018 Aug 22;9(1):3362. doi: 10.1038/s41467-018-05871-5.
Highly motile dendritic protrusions are hallmarks of developing neurons. These exploratory filopodia sample the environment and initiate contacts with potential synaptic partners. To understand the role for dynamic filopodia in dendrite morphogenesis and experience-dependent structural plasticity, we analyzed dendrite dynamics, synapse formation, and dendrite volume expansion in developing ventral lateral neurons (LNvs) of the Drosophila larval visual circuit. Our findings reveal the temporal coordination between heightened dendrite dynamics with synaptogenesis in LNvs and illustrate the strong influence imposed by sensory experience on the prevalence of dendritic filopodia, which regulate the formation of synapses and the expansion of dendritic arbors. Using genetic analyses, we further identified Amphiphysin (Amph), a BAR (Bin/Amphiphysin/Rvs) domain-containing protein as a required component for tuning the dynamic state of LNv dendrites and promoting dendrite maturation. Taken together, our study establishes dynamic filopodia as the key cellular target for experience-dependent regulation of dendrite development.
高度活跃的树突状突起是发育神经元的标志。这些探索性的丝状伪足可以对环境进行采样,并与潜在的突触伙伴建立联系。为了了解动态丝状伪足在树突形态发生和经验依赖性结构可塑性中的作用,我们分析了果蝇幼虫视觉回路中腹外侧神经元 (LNv) 的树突动力学、突触形成和树突体积扩张。我们的研究结果揭示了 LNv 中树突动力学与突触发生之间的时间协调,并说明了感觉经验对树突丝状伪足的普遍性产生的强烈影响,树突丝状伪足调节突触的形成和树突分支的扩展。通过遗传分析,我们进一步确定 Amphiphysin (Amph),一种含有 BAR (Bin/Amphiphysin/Rvs) 结构域的蛋白质,是调节 LNv 树突动态状态和促进树突成熟的必需成分。总之,我们的研究将动态丝状伪足确立为经验依赖性调节树突发育的关键细胞靶标。