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PMID: 24801179 已发表 · ppublish 英语

Characterization of the Rx1-dependent transcriptome during early retinal development.

Giudetti Guido, Giannaccini Martina, Biasci Daniele, Mariotti Sara, Degl'innocenti Andrea, Perrotta Michele, Barsacchi Giuseppina, Andreazzoli Massimiliano

摘要

The transcription factor Rx1, also known as Rax, controls key properties of retinal precursors including migration behavior, proliferation, and maintenance of multipotency. However, Rx1 effector genes are largely unknown.,To identify genes controlled by Rx1 in early retinal precursors, we compared the transcriptome of Xenopus embryos overexpressing Rx1 to that of embryos in which Rx1 was knocked-down. In particular, we selected 52 genes coherently regulated, i.e., actived in Rx1 gain of function and repressed in Rx1 loss of function experiments, or vice versa. RT-qPCR and in situ hybridization confirmed the trend of regulation predicted by microarray data for the selected genes. Most of the genes upregulated by Rx1 are coexpressed with this transcription factor, while downregulated genes are either not expressed or expressed at very low levels in the early developing retina. Putative direct Rx1 target genes, activated by GR-Rx1 in the absence of protein synthesis, include Ephrin B1 and Sh2d3c, an interactor of ephrinB1 receptor, which represent candidate novel effectors for the migration promoting activity of Rx1.,This study identifies previously undescribed Rx1 regulated genes mainly involved in transcription regulation, cell migration/adhesion, and cell proliferation that contribute to delineate the molecular mechanisms underlying Rx1 activities.

关键词
Rax Xenopus cell migration microarray proliferation retinal progenitors
文献信息
期刊
Developmental dynamics : an official publication of the American Association of Anatomists
期刊简称
Dev Dyn
发表日期
2015-06-08
收录日期
2014-09-26
更新日期
2014-09-26
语言
英语
国家/地区
United States
NLM ID
9201927
分析服务
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