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3
Structural and developmental principles of neuropil assembly in C. elegans.秀丽隐杆线虫神经突组装的结构和发育原则。
Nature. 2021 Mar;591(7848):99-104. doi: 10.1038/s41586-020-03169-5. Epub 2021 Feb 24.
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Neuronal diversity and convergence in a visual system developmental atlas.视觉系统发育图谱中的神经元多样性和汇聚
Nature. 2021 Jan;589(7840):88-95. doi: 10.1038/s41586-020-2879-3. Epub 2020 Nov 4.
5
Transcriptional Programs of Circuit Assembly in the Drosophila Visual System.果蝇视觉系统中回路组装的转录程序。
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6
DWnt4 and DWnt10 Regulate Morphogenesis and Arrangement of Columnar Units via Fz2/PCP Signaling in the Drosophila Brain.DWnt4 和 DWnt10 通过果蝇大脑中的 Fz2/PCP 信号调节柱状单位的形态发生和排列。
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7
Structural basis of semaphorin-plexin cis interaction.信号蛋白-神经丛蛋白顺式相互作用的结构基础。
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8
Interactions between Dpr11 and DIP-γ control selection of amacrine neurons in color vision circuits.Dpr11 和 DIP-γ 相互作用控制色觉回路中无长突神经元的选择
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9
An efficient CRISPR-based strategy to insert small and large fragments of DNA using short homology arms.一种使用短同源臂插入小片段和大片段 DNA 的高效基于 CRISPR 的策略。
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10
Slit neuronal secretion coordinates optic lobe morphogenesis in Drosophila.裂隙神经元分泌协调果蝇视神经叶形态发生。
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果蝇视叶分层和形态发生中Plexin A功能的两种不同机制。

Two distinct mechanisms of Plexin A function in Drosophila optic lobe lamination and morphogenesis.

作者信息

Bustillo Maria E, Douthit Jessica, Astigarraga Sergio, Treisman Jessica E

机构信息

Department of Cell Biology, New York University Grossman School of Medicine, 435 E. 30th Street, New York, NY 10016, USA.

出版信息

Development. 2024 May 15;151(10). doi: 10.1242/dev.202237. Epub 2024 May 22.

DOI:10.1242/dev.202237
PMID:38738602
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11190435/
Abstract

Visual circuit development is characterized by subdivision of neuropils into layers that house distinct sets of synaptic connections. We find that, in the Drosophila medulla, this layered organization depends on the axon guidance regulator Plexin A. In Plexin A null mutants, synaptic layers of the medulla neuropil and arborizations of individual neurons are wider and less distinct than in controls. Analysis of semaphorin function indicates that Semaphorin 1a, acting in a subset of medulla neurons, is the primary partner for Plexin A in medulla lamination. Removal of the cytoplasmic domain of endogenous Plexin A has little effect on the formation of medulla layers; however, both null and cytoplasmic domain deletion mutations of Plexin A result in an altered overall shape of the medulla neuropil. These data suggest that Plexin A acts as a receptor to mediate morphogenesis of the medulla neuropil, and as a ligand for Semaphorin 1a to subdivide it into layers. Its two independent functions illustrate how a few guidance molecules can organize complex brain structures by each playing multiple roles.

摘要

视觉回路的发育特征是神经纤维网细分为包含不同突触连接组的层。我们发现,在果蝇的髓质中,这种分层组织依赖于轴突导向调节因子丛状蛋白A。在丛状蛋白A基因敲除突变体中,髓质神经纤维网的突触层和单个神经元的分支比对照组更宽且更不清晰。对信号素功能的分析表明,在一部分髓质神经元中起作用的信号素1a是丛状蛋白A在髓质分层中的主要伙伴。去除内源性丛状蛋白A的细胞质结构域对髓质层的形成影响很小;然而,丛状蛋白A的基因敲除和细胞质结构域缺失突变都会导致髓质神经纤维网的整体形状改变。这些数据表明,丛状蛋白A作为一种受体介导髓质神经纤维网的形态发生,并作为信号素1a的配体将其细分为不同的层。它的两种独立功能说明了一些导向分子如何通过各自发挥多种作用来组织复杂的脑结构。