Tay Yvonne M-S, Tam Wai-Leong, Ang Yen-Sin, Gaughwin Philip M, Yang Henry, Wang Weijia, Liu Rubing, George Joshy, Ng Huck-Hui, Perera Ranjan J, Lufkin Thomas, Rigoutsos Isidore, Thomson Andrew M, Lim Bing
Stem Cell and Developmental Biology, Genome Institute of Singapore, #02-01 Genome, Singapore 138672.
Stem Cells. 2008 Jan;26(1):17-29. doi: 10.1634/stemcells.2007-0295. Epub 2007 Oct 4.
Hundreds of microRNAs (miRNAs) are expressed in mammalian cells, where they aid in modulating gene expression by mediating mRNA transcript cleavage and/or regulation of translation rate. Functional studies to date have demonstrated that several of these miRNAs are important during development. However, the role of miRNAs in the regulation of stem cell growth and differentiation is not well understood. We show herein that microRNA (miR)-134 levels are maximally elevated at day 4 after retinoic acid-induced differentiation or day 2 after N2B27-induced differentiation of mouse embryonic stem cells (mESCs), but this change is not observed during embryoid body differentiation. The elevation of miR-134 levels alone in mESCs enhances differentiation toward ectodermal lineages, an effect that is blocked by a miR-134 antagonist. The promotion of mESC differentiation by miR-134 is due, in part, to its direct translational attenuation of Nanog and LRH1, both of which are known positive regulators of Oct4/POU5F1 and mESC growth. Together, the data demonstrate that miR-134 alone can enhance the differentiation of mESCs to ectodermal lineages and establish a functional role for miR-134 in modulating mESC differentiation through its potential to target and regulate multiple mRNAs.
数百种微小RNA(miRNA)在哺乳动物细胞中表达,它们通过介导mRNA转录物切割和/或调节翻译速率来帮助调节基因表达。迄今为止的功能研究表明,其中一些miRNA在发育过程中很重要。然而,miRNA在干细胞生长和分化调控中的作用尚未得到充分了解。我们在此表明,在视黄酸诱导小鼠胚胎干细胞(mESC)分化后的第4天或N2B27诱导分化后的第2天,微小RNA(miR)-134的水平最高,但在胚状体分化过程中未观察到这种变化。单独提高mESC中miR-134的水平可增强向外胚层谱系的分化,这种作用被miR-134拮抗剂阻断。miR-134促进mESC分化部分是由于其直接抑制Nanog和LRH1的翻译,这两者都是已知的Oct4/POU5F1和mESC生长的正调控因子。总之,这些数据表明,单独的miR-134可以增强mESC向外胚层谱系的分化,并通过其靶向和调节多个mRNA的潜力在调节mESC分化中发挥功能作用。