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果蝇髓质投射神经元的轴突靶向需要可扩散的神经导向因子 Netrin,并与神经母细胞的时间模式协调。

Axon targeting of Drosophila medulla projection neurons requires diffusible Netrin and is coordinated with neuroblast temporal patterning.

机构信息

Department of Cell and Developmental Biology, University of Illinois Urbana-Champaign, Urbana, IL 61801, USA.

Department of Cell and Developmental Biology, University of Illinois Urbana-Champaign, Urbana, IL 61801, USA.

出版信息

Cell Rep. 2023 Mar 28;42(3):112144. doi: 10.1016/j.celrep.2023.112144. Epub 2023 Feb 22.

Abstract

How axon guidance pathways are utilized in coordination with temporal and spatial patterning of neural progenitors to regulate neuropil assembly is not well understood. We study this question in the Drosophila medulla using the transmedullary (Tm) projection neurons that target lobula through the inner optic chiasm (IOC). We demonstrate that the Netrin pathway plays multiple roles in guidance of Tm axons and that temporal patterning of medulla neuroblasts determines pioneer versus follower Tm neurons during this process. Loss of Frazzled (Fra) in early-born pioneer Tm neurons leads to IOC defects, while loss of Fra from follower neurons does not affect the IOC. In the follower projection neurons, Fra is required in other targeting steps including lobula branch extension and layer-specific targeting. Furthermore, different from other identified scenarios of Netrin/Fra involved axon guidance in Drosophila, we demonstrate that diffusible Netrin is required for the correct axon targeting and optic lobe organization.

摘要

神经突起导向途径如何与神经祖细胞的时空模式协调,以调节神经丛的组装,目前还不是很清楚。我们使用靶向外侧小叶的跨中脑(Tm)投射神经元在果蝇的中脑中研究这个问题,该神经元通过内侧视神经交叉(IOC)投射。我们证明,Netrin 途径在 Tm 轴突的导向中发挥多种作用,并且中脑神经母细胞的时空模式决定了在这个过程中先驱性 Tm 神经元与跟随性 Tm 神经元。早期出生的先驱性 Tm 神经元中 Frazzled(Fra)的缺失会导致 IOC 缺陷,而跟随性神经元中 Fra 的缺失不会影响 IOC。在跟随性投射神经元中,Fra 在包括外侧小叶分支延伸和层特异性靶向在内的其他靶向步骤中是必需的。此外,与果蝇中其他已确定的 Netrin/Fra 参与轴突导向的情况不同,我们证明可扩散的 Netrin 对于正确的轴突靶向和视神经叶组织是必需的。

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