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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.

DOI:10.1242/dev.079525
PMID:22874915
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3424042/
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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本文引用的文献

1
Mutations affecting the pattern of the larval cuticle inDrosophila melanogaster : I. Zygotic loci on the second chromosome.影响黑腹果蝇幼虫表皮模式的突变:I. 第二条染色体上的合子基因座。
Wilehm Roux Arch Dev Biol. 1984 Sep;193(5):267-282. doi: 10.1007/BF00848156.
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Asymmetric cell division and Notch signaling specify dopaminergic neurons in Drosophila.不对称细胞分裂和 Notch 信号在果蝇中指定多巴胺能神经元。
PLoS One. 2011;6(11):e26879. doi: 10.1371/journal.pone.0026879. Epub 2011 Nov 4.
3
Dual role for Drosophila lethal of scute in CNS midline precursor formation and dopaminergic neuron and motoneuron cell fate.果蝇 scute 致死基因在中枢神经系统中线前体细胞形成及多巴胺能神经元和运动神经元细胞命运中的双重作用。
Development. 2011 Jun;138(11):2171-83. doi: 10.1242/dev.056507.
4
Drosophila hedgehog signaling and engrailed-runt mutual repression direct midline glia to alternative ensheathing and non-ensheathing fates.果蝇 hedgehog 信号通路和 engrailed-runt 相互抑制作用指导中线胶质细胞向不同的包绕和非包绕命运分化。
Development. 2011 Apr;138(7):1285-95. doi: 10.1242/dev.056895. Epub 2011 Feb 24.
5
Synaptic homeostasis is consolidated by the cell fate gene gooseberry, a Drosophila pax3/7 homolog.突触稳态由细胞命运基因杨梅(gooseberry)巩固,杨梅是果蝇 pax3/7 的同源物。
J Neurosci. 2010 Jun 16;30(24):8071-82. doi: 10.1523/JNEUROSCI.5467-09.2010.
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MidExDB: a database of Drosophila CNS midline cell gene expression.MidExDB:果蝇中枢神经系统中线细胞基因表达数据库。
BMC Dev Biol. 2009 Nov 10;9:56. doi: 10.1186/1471-213X-9-56.
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