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Characterization of TALE genes expression during the first lineage segregation in mammalian embryos

机译:在哺乳动物胚胎的第一个谱系分离过程中TALE基因表达的表征。

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Background: Three amino acid loop extension (TALE) homeodomain-containing transcription factors are generally recognized for their role in organogenesis and differentiation during embryogenesis. However, very little is known about the expression and function of Meis, Pbx, and Prep genes during early development. Results: In order to determine whether TALE proteins could contribute to the early cell fate decisions in mammalian development, this study aimed to characterize in a systematic manner the pattern of expression of all Meis, Pbx, and Prep genes from the precompaction to blastocyst stage corresponding to the first step of cell differentiation in mammals. To reveal to what extent TALE genes expression at these early stages is a conserved feature among mammals, this study was performed in parallel in the bovine and mouse models. We demonstrated the transcription and translation of TALE genes, before gastrulation in the two species. At least one member of Meis, Pbx, and Prep subfamilies was found expressed at the RNA and protein levels but different patterns of expression were observed between genes and between species, suggesting specific gene regulations. Conclusions: Taken together, these results suggest a previously unexpected involvement of these factors during the early development in mammals.
机译:背景:含有三个氨基酸环延伸(TALE)同源结构域的转录因子因其在胚胎发生过程中的器官发生和分化中的作用而被普遍认可。但是,关于Meis,Pbx和Prep基因在早期发育过程中的表达和功能了解甚少。结果:为了确定TALE蛋白是否有助于哺乳动物发育中的早期细胞命运决定,本研究旨在系统地表征从预紧实到胚泡期的所有Meis,Pbx和Prep基因的表达模式。进入哺乳动物细胞分化的第一步。为了揭示TALE基因在这些早期阶段的表达在多大程度上是哺乳动物中的保守特征,这项研究在牛和小鼠模型中并行进行。我们证明了在两个物种的胃化之前,TALE基因的转录和翻译。发现至少一个Meis,Pbx和Prep亚家族成员在RNA和蛋白质水平表达,但在基因之间和物种之间观察到不同的表达模式,这提示了特定的基因调控。结论:综上所述,这些结果表明这些因素在哺乳动物的早期发育过程中是以前未曾预料到的。

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