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果蝇多巴胺能前体细胞的形成与特化。

Formation and specification of a Drosophila dopaminergic precursor cell.

机构信息

Department of Biochemistry and Biophysics, Program in Molecular Biology and Biotechnology, The University of North Carolina at Chapel Hill, Chapel Hill, NC 27599-3280, USA.

出版信息

Development. 2012 Sep;139(18):3316-25. doi: 10.1242/dev.079525. Epub 2012 Aug 8.

Abstract

Dopaminergic neurons play important roles in animal behavior, including motivation, reward and locomotion. The Drosophila dopaminergic H-cell interneuron is an attractive system for studying the genetics of neural development because analysis is focused on a single neuronal cell type. Here we provide a mechanistic understanding of how MP3, the precursor to the H-cell, forms and acquires its identity. We show that the gooseberry/gooseberry-neuro (gsb/gsb-n) transcription factor genes act to specify MP3 cell fate. It is proposed that single-minded commits neuroectodermal cells to a midline fate, followed by a series of signaling events that result in the formation of a single gsb(+)/gsb-n(+) MP3 cell per segment. The wingless signaling pathway establishes a midline anterior domain by activating expression of the forkhead transcription factors sloppy paired 1 and sloppy paired 2. This is followed by hedgehog signaling that activates gsb/gsb-n expression in a subgroup of anterior cells. Finally, Notch signaling results in the selection of a single MP3, with the remaining cells becoming midline glia. In MP3, gsb/gsb-n direct H-cell development, in large part by activating expression of the lethal of scute and tailup H-cell regulatory genes. Thus, a series of signaling and transcriptional events result in the specification of a unique dopaminergic precursor cell. Additional genetic experiments indicate that the molecular mechanisms that govern MP3/H-cell development might also direct the development of non-midline dopaminergic neurons.

摘要

多巴胺能神经元在动物行为中发挥重要作用,包括动机、奖励和运动。果蝇多巴胺能 H 细胞中间神经元是研究神经发育遗传学的一个有吸引力的系统,因为分析集中在单个神经元细胞类型上。在这里,我们提供了一个关于 MP3 如何形成并获得其身份的机制理解,MP3 是 H 细胞的前体。我们表明,醋栗/醋栗神经(gsb/gsb-n)转录因子基因决定 MP3 细胞命运。据推测,单一minded 使神经外胚层细胞具有中线命运,随后发生一系列信号事件,导致每个节段形成一个单一的 gsb(+)/gsb-n(+)MP3 细胞。Wingless 信号通路通过激活叉头转录因子 sloppy paired 1 和 sloppy paired 2 的表达来建立中线前域。随后 hedgehog 信号激活前细胞亚群中 gsb/gsb-n 的表达。最后,Notch 信号导致单个 MP3 的选择,其余细胞成为中线胶质细胞。在 MP3 中,gsb/gsb-n 直接激活致死的 scute 和 tailup H 细胞调控基因的表达,从而促进 H 细胞的发育。因此,一系列信号和转录事件导致了一个独特的多巴胺能前体细胞的特化。额外的遗传实验表明,指导 MP3/H 细胞发育的分子机制也可能指导非中线多巴胺能神经元的发育。

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