Suppr超能文献

针对鉴定参与睾丸血管分化的基因,对XX Wnt4突变性腺进行的微阵列分析。

A microarray analysis of the XX Wnt4 mutant gonad targeted at the identification of genes involved in testis vascular differentiation.

作者信息

Coveney Douglas, Ross Andrea J, Slone Jesse D, Capel Blanche

机构信息

The Department of Cell Biology, Duke University Medical Center, Durham, NC 27710, USA.

出版信息

Gene Expr Patterns. 2007 Jan;7(1-2):82-92. doi: 10.1016/j.modgep.2006.05.012. Epub 2006 Jun 6.

Abstract

One of the earliest morphological changes during testicular differentiation is the establishment of an XY specific vasculature. The testis vascular system is derived from mesonephric endothelial cells that migrate into the gonad. In the XX gonad, mesonephric cell migration and testis vascular development are inhibited by WNT4 signaling. In Wnt4 mutant XX gonads, endothelial cells migrate from the mesonephros and form a male-like coelomic vessel. Interestingly, this process occurs in the absence of other obvious features of testis differentiation, suggesting that Wnt4 specifically inhibits XY vascular development. Consequently, the XX Wnt4 mutant mice presented an opportunity to focus a gene expression screen on the processes of mesonephric cell migration and testicular vascular development. We compared differences in gene expression between XY Wnt4+/+ and XX Wnt4+/+ gonads and between XX Wnt4+/+ and XX Wnt4+/+ gonads to identify sets of genes similarly upregulated in wildtype XY gonads and XX mutant gonads or upregulated in XX gonads as compared to XY gonads and XX mutant gonads. We show that several genes identified in the first set are expressed in vascular domains, and have predicted functions related to cell migration or vascular development. However, the expression patterns and known functions of other genes are not consistent with roles in these processes. This screen has identified candidates for regulation of sex specific vascular development, and has implicated a role for WNT4 signaling in the development of Sertoli and germ cell lineages not immediately obvious from previous phenotypic analyses.

摘要

睾丸分化过程中最早出现的形态学变化之一是建立XY特异性脉管系统。睾丸血管系统源自迁移至性腺的中肾内皮细胞。在XX性腺中,中肾细胞迁移和睾丸血管发育受到WNT4信号通路的抑制。在Wnt4突变的XX性腺中,内皮细胞从中肾迁移并形成类似雄性的体腔血管。有趣的是,这一过程发生在缺乏睾丸分化其他明显特征的情况下,表明Wnt4特异性抑制XY血管发育。因此,XX Wnt4突变小鼠为将基因表达筛选聚焦于中肾细胞迁移和睾丸血管发育过程提供了契机。我们比较了XY Wnt4+/+和XX Wnt4+/+性腺之间以及XX Wnt4+/+和XX Wnt4-/-性腺之间的基因表达差异,以鉴定在野生型XY性腺和XX突变性腺中类似上调的基因集,或者与XY性腺和XX突变性腺相比在XX性腺中上调的基因集。我们发现,在第一组中鉴定出的几个基因在血管区域表达,并具有与细胞迁移或血管发育相关的预测功能。然而,其他基因的表达模式和已知功能与这些过程中的作用不一致。该筛选鉴定出了性别特异性血管发育调控的候选基因,并暗示WNT4信号通路在支持细胞和生殖细胞谱系发育中的作用,这在之前的表型分析中并不明显。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验