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从谱系到连接特异性。POU 结构域转录因子控制果蝇嗅觉投射神经元的精确连接。

From lineage to wiring specificity. POU domain transcription factors control precise connections of Drosophila olfactory projection neurons.

作者信息

Komiyama Takaki, Johnson Wayne A, Luo Liqun, Jefferis Gregory S X E

机构信息

Department of Biological Sciences, Neurosciences Program, Stanford University, Stanford, CA 94305, USA.

出版信息

Cell. 2003 Jan 24;112(2):157-67. doi: 10.1016/s0092-8674(03)00030-8.

Abstract

Axonal selection of synaptic partners is generally believed to determine wiring specificity in the nervous system. However, we have recently found evidence for specific dendritic targeting in the olfactory system of Drosophila: second order olfactory neurons (Projection Neurons) from the anterodorsal (adPN) and lateral (lPN) lineages send their dendrites to stereotypical, intercalating but non-overlapping glomeruli. Here we show that POU domain transcription factors, Acj6 and Drifter, are expressed in adPNs and lPNs respectively, and are required for their dendritic targeting. Moreover, misexpression of Acj6 in lPNs, or Drifter in adPNs, results in dendritic targeting to glomeruli normally reserved for the other PN lineage. Thus, Acj6 and Drifter translate PN lineage information into distinct dendritic targeting specificity. Acj6 also controls stereotypical axon terminal arborization of PNs in a central target, suggesting that the connectivity of PN axons and dendrites in different brain centers is coordinately regulated.

摘要

一般认为,突触伙伴的轴突选择决定了神经系统中的布线特异性。然而,我们最近在果蝇嗅觉系统中发现了特定树突靶向的证据:来自前背侧(adPN)和外侧(lPN)谱系的二级嗅觉神经元(投射神经元)将它们的树突发送到 stereotypical、相互嵌入但不重叠的肾小球。在这里,我们表明,POU 结构域转录因子 Acj6 和 Drifter 分别在 adPN 和 lPN 中表达,并且是它们树突靶向所必需的。此外,在 lPN 中错误表达 Acj6,或在 adPN 中错误表达 Drifter,会导致树突靶向通常为另一个 PN 谱系保留的肾小球。因此,Acj6 和 Drifter 将 PN 谱系信息转化为不同的树突靶向特异性。Acj6 还控制了 PN 在中央靶标的 stereotypical 轴突终末分支,这表明 PN 轴突和树突在不同脑区的连接是协同调节的。

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