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鸡胚发育过程中的微小RNA表达

MicroRNA expression during chick embryo development.

作者信息

Darnell Diana K, Kaur Simran, Stanislaw Stacey, Konieczka Jay H, Yatskievych Tatiana A, Antin Parker B

机构信息

Department of Cell Biology and Anatomy, University of Arizona, Tucson, Arizona, USA.

出版信息

Dev Dyn. 2006 Nov;235(11):3156-65. doi: 10.1002/dvdy.20956.

Abstract

MicroRNAs (miRNAs) are small, abundant, noncoding RNAs that modulate protein abundance by interfering with target mRNA translation or stability. miRNAs are detected in organisms from all domains and may regulate 30% of transcripts in vertebrates. Understanding miRNA function requires a detailed determination of expression, yet this has not been reported in an amniote species. High-throughput whole mount in situ hybridization was performed on chicken embryos to map expression of 135 miRNA genes including five miRNAs that had not been previously reported in chicken. Eighty-four miRNAs were detected before day 5 of embryogenesis, and 75 miRNAs showed differential expression. Whereas few miRNAs were expressed during formation of the primary germ layers, the number of miRNAs detected increased rapidly during organogenesis. Patterns highlighted cell-type, organ or structure-specific expression, localization within germ layers and their derivatives, and expression in multiple cell and tissue types and within sub-regions of structures and tissues. A novel group of miRNAs was highly expressed in most tissues but much reduced in one or a few organs, including the heart. This study presents the first comprehensive overview of miRNA expression in an amniote organism and provides an important foundation for investigations of miRNA gene regulation and function.

摘要

微小RNA(miRNA)是一类短小、丰富的非编码RNA,它们通过干扰靶mRNA的翻译或稳定性来调节蛋白质丰度。在所有生物域的生物体中都能检测到miRNA,并且它们可能调控脊椎动物中30%的转录本。了解miRNA的功能需要详细测定其表达情况,但尚未有关于羊膜动物物种的此类报道。我们对鸡胚胎进行了高通量全胚胎原位杂交,以绘制135个miRNA基因的表达图谱,其中包括5个此前未在鸡中报道过的miRNA。在胚胎发育第5天之前检测到了84个miRNA,并且有75个miRNA表现出差异表达。在原肠胚形成过程中几乎没有miRNA表达,而在器官发生过程中检测到的miRNA数量迅速增加。这些模式突出了细胞类型、器官或结构特异性表达、在胚层及其衍生物中的定位,以及在多种细胞和组织类型中以及在结构和组织的子区域中的表达。有一组新的miRNA在大多数组织中高度表达,但在一个或几个器官(包括心脏)中大量减少。本研究首次全面概述了羊膜动物中miRNA的表达情况,并为研究miRNA基因调控和功能提供了重要基础。

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