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Let-7b/c 在哺乳动物器官发生过程中增强组织特异性 mRNA 的稳定性,作为涉及 KSRP 的反馈回路的一部分。

Let-7b/c enhance the stability of a tissue-specific mRNA during mammalian organogenesis as part of a feedback loop involving KSRP.

机构信息

INSERM U1065, Centre Méditerranéen de Médecine Moléculaire (C3M), Team 10-Control of Gene Expression, Nice, France.

出版信息

PLoS Genet. 2012;8(7):e1002823. doi: 10.1371/journal.pgen.1002823. Epub 2012 Jul 26.

Abstract

Gene silencing mediated by either microRNAs (miRNAs) or Adenylate/uridylate-rich elements Mediated mRNA Degradation (AMD) is a powerful way to post-transcriptionally modulate gene expression. We and others have reported that the RNA-binding protein KSRP favors the biogenesis of select miRNAs (including let-7 family) and activates AMD promoting the decay of inherently labile mRNAs. Different layers of interplay between miRNA- and AMD-mediated gene silencing have been proposed in cultured cells, but the relationship between the two pathways in living organisms is still elusive. We conditionally deleted Dicer in mouse pituitary from embryonic day (E) 9.5 through Cre-mediated recombination. In situ hybridization, immunohistochemistry, and quantitative reverse transcriptase-PCR revealed that Dicer is essential for pituitary morphogenesis and correct expression of hormones. Strikingly, αGSU (alpha glycoprotein subunit, common to three pituitary hormones) was absent in Dicer-deleted pituitaries. αGSU mRNA is unstable and its half-life increases during pituitary development. A transcriptome-wide analysis of microdissected E12.5 pituitaries revealed a significant increment of KSRP expression in conditional Dicer-deleted mice. We found that KSRP directly binds to αGSU mRNA, promoting its rapid decay; and, during pituitary development, αGSU expression displays an inverse temporal relationship to KSRP. Further, let-7b/c downregulated KSRP expression, promoting the degradation of its mRNA by directly binding to the 3'UTR. Therefore, we propose a model in which let-7b/c and KSRP operate within a negative feedback loop. Starting from E12.5, KSRP induces the maturation of let-7b/c that, in turn, post-transcriptionally downregulates the expression of KSRP itself. This event leads to stabilization of αGSU mRNA, which ultimately enhances the steady-state expression levels. We have identified a post-transcriptional regulatory network active during mouse pituitary development in which the expression of the hormone αGSU is increased by let7b/c through downregulation of KSRP. Our study unveils a functional crosstalk between miRNA- and AMD-dependent gene regulation during mammalian organogenesis events.

摘要

基因沉默由 microRNAs (miRNAs) 或 Adenylate/uridylate-rich elements Mediated mRNA Degradation (AMD) 介导,是一种在后转录水平上调节基因表达的有效方法。我们和其他人已经报道,RNA 结合蛋白 KSRP 有利于特定 miRNAs(包括 let-7 家族)的生物发生,并激活 AMD 促进固有不稳定 mRNA 的降解。在培养细胞中已经提出了 miRNA 和 AMD 介导的基因沉默之间不同层次的相互作用,但这两种途径在生物体中的关系仍然难以捉摸。我们通过 Cre 介导的重组从胚胎期 9.5 天(E)开始在小鼠垂体中条件性删除 Dicer。原位杂交、免疫组织化学和定量逆转录-PCR 显示 Dicer 对于垂体形态发生和激素的正确表达是必不可少的。引人注目的是,αGSU(三种垂体激素共有的α糖蛋白亚基)在 Dicer 缺失的垂体中不存在。αGSU mRNA 不稳定,其半衰期在垂体发育过程中增加。对微分离的 E12.5 垂体进行的转录组分析显示,在条件性 Dicer 缺失的小鼠中 KSRP 表达显著增加。我们发现 KSRP 直接结合到 αGSU mRNA 上,促进其快速降解;并且,在垂体发育过程中,αGSU 表达与 KSRP 呈反时相关系。此外,let-7b/c 下调 KSRP 表达,通过直接结合 3'UTR 促进其 mRNA 的降解。因此,我们提出了一个模型,其中 let-7b/c 和 KSRP 在负反馈回路中运作。从 E12.5 开始,KSRP 诱导 let-7b/c 的成熟,反过来,let-7b/c 又在后转录水平下调 KSRP 本身的表达。这一事件导致 αGSU mRNA 的稳定,最终增强了其稳态表达水平。我们已经确定了在小鼠垂体发育过程中活跃的转录后调节网络,其中激素 αGSU 的表达通过下调 KSRP 被 let7b/c 增加。我们的研究揭示了在哺乳动物器官发生事件中 miRNA 和 AMD 依赖的基因调节之间的功能串扰。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2698/3405994/abae19da5fbd/pgen.1002823.g001.jpg

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