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果蝇神经胶质细胞决定过程中Notch活性的上下文依赖性利用

Context-dependent utilization of Notch activity in Drosophila glial determination.

作者信息

Umesono Yoshihiko, Hiromi Yasushi, Hotta Yoshiki

机构信息

Division of Developmental Genetics, National Institute of Genetics, Department of Genetics, Graduate University for Advanced Studies, Mishima, 411-8540, Japan.

出版信息

Development. 2002 May;129(10):2391-9. doi: 10.1242/dev.129.10.2391.

DOI:10.1242/dev.129.10.2391
PMID:11973271
Abstract

During Drosophila neurogenesis, glial differentiation depends on the expression of glial cells missing (gcm). Understanding how glial fate is achieved thus requires knowledge of the temporal and spatial control mechanisms directing gcm expression. A recent report showed that in the adult bristle lineage, gcm expression is negatively regulated by Notch signaling ( Van De Bor, V. and Giangrande, A. (2001). Development 128, 1381-1390). Here we show that the effect of Notch activation on gliogenesis is context-dependent. In the dorsal bipolar dendritic (dbd) sensory lineage in the embryonic peripheral nervous system (PNS), asymmetric cell division of the dbd precursor produces a neuron and a glial cell, where gcm expression is activated in the glial daughter. Within the dbd lineage, Notch is specifically activated in one of the daughter cells and is required for gcm expression and a glial fate. Thus Notch activity has opposite consequences on gcm expression in two PNS lineages. Ectopic Notch activation can direct gliogenesis in a subset of embryonic PNS lineages, suggesting that Notch-dependent gliogenesis is supported in certain developmental contexts. We present evidence that POU-domain protein Nubbin/PDM-1 is one of the factors that provide such context.

摘要

在果蝇神经发生过程中,神经胶质细胞的分化依赖于“缺失神经胶质细胞”(gcm)的表达。因此,要了解神经胶质细胞命运是如何实现的,就需要了解指导gcm表达的时空控制机制。最近的一份报告表明,在成年刚毛谱系中,gcm的表达受到Notch信号通路的负调控(Van De Bor, V. 和Giangrande, A. (2001). Development 128, 1381 - 1390)。在这里,我们表明Notch激活对神经胶质细胞生成的影响取决于具体情况。在胚胎外周神经系统(PNS)的背侧双极树突状(dbd)感觉谱系中,dbd前体细胞的不对称细胞分裂产生一个神经元和一个神经胶质细胞,其中gcm在神经胶质细胞子代中被激活。在dbd谱系中,Notch在其中一个子代细胞中被特异性激活,并且是gcm表达和神经胶质细胞命运所必需的。因此,Notch活性在两个PNS谱系中对gcm表达产生相反的影响。异位Notch激活可以在胚胎PNS谱系的一个子集中引导神经胶质细胞生成,这表明在某些发育环境中存在Notch依赖性神经胶质细胞生成。我们提供的证据表明,POU结构域蛋白Nubbin/PDM-1是提供这种环境的因素之一。

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