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胚胎第11.5天(Ts19)小鼠胚胎中Wnt和卷曲蛋白基因表达模式的三维表示。

3D representation of Wnt and Frizzled gene expression patterns in the mouse embryo at embryonic day 11.5 (Ts19).

作者信息

Summerhurst Kristen, Stark Margaret, Sharpe James, Davidson Duncan, Murphy Paula

机构信息

Department of Zoology, School of Natural Sciences, Trinity College Dublin, College Green, Dublin, Ireland.

出版信息

Gene Expr Patterns. 2008 May;8(5):331-48. doi: 10.1016/j.gep.2008.01.007. Epub 2008 Feb 13.

Abstract

Wnt signalling is one of the fundamental cell communication systems operating in the embryo and the collection of 19 Wnt and 10 Frizzled (Fzd) receptor genes (in mouse and human) represent just part of a complex system to be unravelled. Here we present a spatially comprehensive set of data on the 3D distribution of Wnt and Fzd gene expression patterns at a carefully selected single stage of mouse development. Overviews and selected features of the patterns are presented and the full 3D data set, generated by fully described probes, is available to the research community through the Edinburgh Mouse Atlas of Gene Expression. In addition to being comprehensive, the data set has been generated and recorded in a consistent manner to facilitate comparisons between gene expression patterns with the capacity to generate matching virtual sections from the 3D representations for specific studies. Expression patterns in the left forelimb were selected for more detailed comparative description. In addition to confirming the previously published expression of these genes, our whole embryo and limb bud analyses significantly extend the data in terms of details of the patterns and the addition of previously undetected sites of expression. Our focussed analysis of expression domains in the limb, defined by just two gene families, reveals a surprisingly high degree of spatial complexity and underlines the enormous potential for local cellular interactions that exist within an emerging structure. This work also highlights the use of OPT to generate detailed high-quality, spatially complex expression data that is readily comparable between specimens and can be reviewed and reanalysed as required for specific studies. It represents a core set of data that will be extended with additional stages of development and through addition of potentially interacting genes and ultimately other cross-regulatory communication pathways operating in the embryo.

摘要

Wnt信号通路是胚胎中运作的基本细胞通讯系统之一,19个Wnt基因和10个卷曲蛋白(Fzd)受体基因(小鼠和人类中)的集合只是一个有待解开的复杂系统的一部分。在此,我们展示了在小鼠发育的一个精心挑选的单一阶段,Wnt和Fzd基因表达模式三维分布的一套空间全面的数据。展示了这些模式的概述和选定特征,并且由充分描述的探针生成的完整三维数据集通过《爱丁堡小鼠基因表达图谱》向研究界提供。除了具有全面性之外,该数据集以一致的方式生成和记录,以促进基因表达模式之间的比较,并能够从三维表示中生成用于特定研究的匹配虚拟切片。选择左前肢的表达模式进行更详细的比较描述。除了证实这些基因先前已发表的表达之外,我们对整个胚胎和肢芽的分析在模式细节方面以及添加先前未检测到的表达位点方面显著扩展了数据。我们对仅由两个基因家族定义的肢体表达域的重点分析揭示了惊人的高度空间复杂性,并强调了在一个正在形成的结构中存在的局部细胞相互作用的巨大潜力。这项工作还突出了光学投影断层成像(OPT)用于生成详细的、高质量的、空间复杂的表达数据,这些数据在标本之间易于比较,并且可以根据特定研究的需要进行审查和重新分析。它代表了一组核心数据,将随着发育的其他阶段以及通过添加潜在相互作用的基因以及最终在胚胎中运作的其他交叉调节通讯通路而得到扩展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/09dc/2452985/e9891f137756/gr1.jpg

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