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胚胎Dlx5表达的早期阶段界定了神经板的头侧边界。

An early phase of embryonic Dlx5 expression defines the rostral boundary of the neural plate.

作者信息

Yang L, Zhang H, Hu G, Wang H, Abate-Shen C, Shen M M

机构信息

Center for Advanced Biotechnology and Medicine, University of Medicine and Dentistry of New Jersey-Robert Wood Johnson Medical School, Piscataway, New Jersey 08854, USA.

出版信息

J Neurosci. 1998 Oct 15;18(20):8322-30. doi: 10.1523/JNEUROSCI.18-20-08322.1998.

Abstract

Relatively little is known about the molecular events that specify the rostrocaudal axis of the neural plate. Here we show that a member of the Distal-less (Dlx) homeobox gene family, Dlx5, is one of the earliest known markers for the most rostral ectoderm, before the formation of an overt neural plate. During late gastrulation Dlx5 expression becomes localized to the anterior neural ridge, which defines the rostral boundary of the neural plate, and also extends caudolaterally, marking the region of the presumptive neural crest. Subsequently, Dlx5 is expressed in tissues (olfactory epithelium, ventral cephalic epithelium) that are believed to derive from the anterior neural ridge, based on the avian fate map. The early phase of Dlx5 expression in the anterior neural ridge and its derivatives is distinct from a later phase of expression in the ventral telencephalon and diencephalon and also appears to be unique for Dlx5 among members of the Dlx family. Another distinctive feature of Dlx5 expression is the occurrence of an alternative transcript (deltaDlx5), which encodes a truncated protein lacking the homeodomain, and represents a significant fraction of total Dlx5 transcripts at all embryonic stages that were examined. In contrast with full-length DLX5, the deltaDLX5 truncated protein is deficient in DNA-binding activity and does not interact with the homeoprotein partner MSX1. Taken together, our findings suggest that Dlx5 activity may be regulated via the expression of an alternative transcript and demonstrate that Dlx5 marks the anterior boundary of the neural plate.

摘要

关于确定神经板前后轴的分子事件,人们了解得相对较少。在此我们表明,远端缺失(Dlx)同源框基因家族的一个成员Dlx5,是已知最早出现在最前端外胚层的标志物之一,此时尚未形成明显的神经板。在原肠胚晚期,Dlx5的表达定位于前神经嵴,前神经嵴确定了神经板的前端边界,并且还向尾外侧延伸,标记了推定神经嵴的区域。随后,基于鸟类命运图谱,Dlx5在被认为源自前神经嵴的组织(嗅觉上皮、腹侧头部上皮)中表达。Dlx5在前神经嵴及其衍生物中的早期表达阶段,与在腹侧端脑和间脑中的后期表达阶段不同,并且在Dlx家族成员中似乎是Dlx5所特有的。Dlx5表达的另一个显著特征是出现了一种可变转录本(deltaDlx5),它编码一种缺少同源结构域的截短蛋白,并且在所有被检测的胚胎阶段都占Dlx5转录本总数的很大一部分。与全长DLX5相反,deltaDLX5截短蛋白缺乏DNA结合活性,并且不与同源结构域蛋白伴侣MSX1相互作用。综上所述,我们的研究结果表明,Dlx5的活性可能通过可变转录本的表达来调节,并证明Dlx5标记了神经板的前端边界。

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