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果蝇POU同源结构域基因在发育中的胚胎中枢神经系统神经前体细胞身份特化中的作用。

The role of a Drosophila POU homeo domain gene in the specification of neural precursor cell identity in the developing embryonic central nervous system.

作者信息

Yang X, Yeo S, Dick T, Chia W

机构信息

Drosophila Neurobiology Laboratory, National University of Singapore.

出版信息

Genes Dev. 1993 Mar;7(3):504-16. doi: 10.1101/gad.7.3.504.

Abstract

The Drosophila embryonic central nervous system (CNS) is derived from a stereotypic array of progenitor stem cells called neuroblasts (NBs). Each of the approximately 25 NBs per hemisegment undergoes repeated asymmetric divisions to produce, on average, 5-10 smaller ganglion mother cells (GMCs); each GMC, in turn, divides to produce two neurons. We demonstrate that the protein product encoded by a POU homeo domain gene (dPOU28/pdm-2) is expressed in the cell nuclei of a subset of NBs and GMCs. In the wild-type animal, GMC-1 is the only identified cell in the NB4-2 lineage that expresses dPOU28 protein to a high level, and it divides to produce the RP2 neuron and a second cell of unknown fate. Our results suggest that the presence of ectopically induced dPOU28/pdm-2 protein in the progeny of GMC-1 is sufficient to cause both of these cells to adopt their parental GMC-1 cell fate, leading to duplication of the RP2 neuron (and its sister cell) on the basis of both immunological and morphological criteria. These observations clearly implicate a role for dPOU28/pdm-2 in the specification of GMC-1 cell identity in the NB4-2 lineage and possibly in the specification of cell fate in other NB lineages in the developing embryonic CNS.

摘要

果蝇胚胎中枢神经系统(CNS)源自一组称为神经母细胞(NBs)的定型祖干细胞。每个半体节中约25个神经母细胞中的每一个都会经历反复的不对称分裂,平均产生5 - 10个较小的神经节母细胞(GMCs);每个神经节母细胞又会分裂产生两个神经元。我们证明,一个POU同源结构域基因(dPOU28/pdm - 2)编码的蛋白质产物在一部分神经母细胞和神经节母细胞的细胞核中表达。在野生型动物中,GMC - 1是NB4 - 2谱系中唯一被鉴定出高水平表达dPOU28蛋白的细胞,它分裂产生RP2神经元和另一个命运未知的细胞。我们的结果表明,在GMC - 1的子代中异位诱导的dPOU28/pdm - 2蛋白的存在足以使这两个细胞都采用其亲代GMC - 1细胞的命运,从而基于免疫学和形态学标准导致RP2神经元(及其姐妹细胞)的复制。这些观察结果清楚地表明dPOU28/pdm - 2在NB4 - 2谱系中GMC - 1细胞身份的特化中起作用,并且可能在发育中的胚胎中枢神经系统的其他NB谱系中的细胞命运特化中起作用。

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