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RNA 结合蛋白 Quaking 通过精细调控 Hh 信号控制肌肉发育。

Fine-tuning of Hh signaling by the RNA-binding protein Quaking to control muscle development.

机构信息

Ecole Normale Supérieure, Institut de Biologie, 46 rue d'Ulm, 75005 Paris, France.

出版信息

Development. 2011 May;138(9):1783-94. doi: 10.1242/dev.059121. Epub 2011 Mar 29.

Abstract

The development of the different muscles within the somite is a complex process that involves the Hedgehog (Hh) signaling pathway. To specify the proper number of muscle cells and organize them spatially and temporally, the Hh signaling pathway needs to be precisely regulated at different levels, but only a few factors external to the pathway have been described. Here, we report for the first time the role of the STAR family RNA-binding protein Quaking A (QkA) in somite muscle development. We show in zebrafish that the loss of QkA function affects fast muscle fiber maturation as well as Hh-induced muscle derivative specification and/or morphogenesis. Mosaic analysis reveals that fast fiber maturation depends on the activity of QkA in the environment of fast fiber progenitors. We further show that Hh signaling requires QkA activity for muscle development. By an in silico approach, we screened the 3'UTRs of known Hh signaling component mRNAs for the Quaking response element and found the transcription factor Gli2a, a known regulator of muscle fate development. Using destabilized GFP as a reporter, we show that the gli2a mRNA 3'UTR is a functional QkA target. Consistent with this notion, the loss of QkA function rescued slow muscle fibers in yot mutant embryos, which express a dominant-negative Gli2a isoform. Thus, our results reveal a new mechanism to ensure muscle cell fate diversity by fine-tuning of the Hh signaling pathway via RNA-binding proteins.

摘要

体节内不同肌肉的发育是一个复杂的过程,涉及 Hedgehog(Hh)信号通路。为了指定适当数量的肌肉细胞,并在空间和时间上对其进行组织,Hh 信号通路需要在不同水平上进行精确调节,但仅描述了几种途径以外的因素。在这里,我们首次报道了 STAR 家族 RNA 结合蛋白 Quaking A(QkA)在体节肌肉发育中的作用。我们在斑马鱼中表明,QkA 功能的丧失会影响快肌纤维的成熟,以及 Hh 诱导的肌肉衍生物的特化和/或形态发生。嵌合体分析表明,快肌纤维的成熟取决于快肌纤维祖细胞环境中 QkA 的活性。我们进一步表明,Hh 信号通路需要 QkA 活性来进行肌肉发育。通过计算方法,我们筛选了已知 Hh 信号成分 mRNA 的 3'UTR 中是否存在 Quaking 反应元件,发现了转录因子 Gli2a,它是肌肉命运发育的已知调节剂。使用不稳定的 GFP 作为报告基因,我们表明 gli2a mRNA 3'UTR 是 QkA 的一个功能靶点。与这一观点一致的是,QkA 功能的丧失挽救了表达显性负Gli2a 异构体的 yot 突变体胚胎中的慢肌纤维。因此,我们的研究结果揭示了一种通过 RNA 结合蛋白精细调节 Hh 信号通路来确保肌肉细胞命运多样性的新机制。

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