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小鼠achaete-scute同源物Mash-1在发育中的神经系统中的动态表达。

Dynamic expression of the murine Achaete-Scute homologue Mash-1 in the developing nervous system.

作者信息

Guillemot F, Joyner A L

机构信息

Division of Molecular and Developmental Biology, Samuel Lunenfeld Research Institute, Mount Sinai Hospital, Toronto, Canada.

出版信息

Mech Dev. 1993 Aug;42(3):171-85. doi: 10.1016/0925-4773(93)90006-j.

Abstract

The Drosophila Achaete-Scute Complex genes encode transcriptional regulators belonging to the basic-helix-loop-helix family which control early steps of development of the central and peripheral nervous systems. We have isolated two mouse homologues of Achaete-Scute Complex genes, Mash-1 and Mash-2, by using the conservation of the basic-helix-loop-helix domain in this family. In this article, we analyse the expression of Mash-1 from its onset during neurulation to adult stages by RNA in situ hybridization on whole mounts and sections. As was observed for the rat Mash-1 protein, mouse Mash-1 RNA expression is restricted to cells of the developing central and peripheral nervous systems. We have observed three successive phases in the distribution of Mash-1 transcripts in the developing central nervous system. Initially, between embryonic day 8.5 and 10.5, Mash-1 transcripts are found in restricted domains in the neuroepithelium of the midbrain and ventral forebrain, as well as in the spinal cord. Between embryonic day 10.5 and 12.5, Mash-1 expression pattern changes from a restricted to a widespread one. Mash-1 transcripts are then found at variable levels in the ventricular zone in all regions of the brain. From embryonic day 12.5 to post-natal stages, Mash-1 is also expressed in cells outside of the ventricular zone throughout the brain. In addition, Mash-1 is expressed during development of the olfactory epithelium and neural retina. Overall, its expression pattern suggest that Mash-1 plays a role at early stages of development of specific neural lineages in most regions of the central nervous system and of several lineages in the peripheral nervous system. We have also compared the expression of Mash-1 and mouse Notch because their Drosophila homologues have been shown to interact genetically. The two genes show very similar expression patterns, both spatially and temporally, in the early developing brain and in the retina, suggesting that both genes may participate in the development of the same neural lineages.

摘要

果蝇的无刚毛 - 毛状体复合基因编码属于碱性螺旋 - 环 - 螺旋家族的转录调节因子,这些因子控制中枢和外周神经系统发育的早期步骤。我们利用该家族中碱性螺旋 - 环 - 螺旋结构域的保守性,分离出了无刚毛 - 毛状体复合基因的两个小鼠同源物,即Mash - 1和Mash - 2。在本文中,我们通过对整体标本和切片进行RNA原位杂交,分析了Mash - 1从神经胚形成开始到成年阶段的表达情况。正如在大鼠Mash - 1蛋白中所观察到的那样,小鼠Mash - 1 RNA的表达仅限于发育中的中枢和外周神经系统的细胞。我们在发育中的中枢神经系统中观察到Mash - 1转录本分布的三个连续阶段。最初,在胚胎第8.5天至10.5天之间,Mash - 1转录本出现在中脑和腹侧前脑的神经上皮以及脊髓的特定区域。在胚胎第10.5天至12.5天之间,Mash - 1的表达模式从局限型变为广泛型。然后在整个脑区的脑室区发现不同水平的Mash - 1转录本。从胚胎第12.5天到出生后阶段,Mash - 1也在整个脑区的脑室区外的细胞中表达。此外,Mash - 1在嗅觉上皮和神经视网膜的发育过程中表达。总体而言,其表达模式表明Mash - 1在中枢神经系统大多数区域的特定神经谱系以及外周神经系统的几个谱系的早期发育阶段发挥作用。我们还比较了Mash - 1和小鼠Notch的表达,因为它们的果蝇同源物已被证明在遗传上相互作用。这两个基因在早期发育的脑和视网膜中在空间和时间上都表现出非常相似的表达模式,表明这两个基因可能都参与相同神经谱系的发育。

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