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转录后机制有助于血管发育过程中 Etv2 的抑制。

Post-transcriptional mechanisms contribute to Etv2 repression during vascular development.

机构信息

Program in Gene Function and Expression, University of Massachusetts Medical School, Worcester, MA 01605, USA.

出版信息

Dev Biol. 2013 Dec 1;384(1):128-40. doi: 10.1016/j.ydbio.2013.08.028. Epub 2013 Sep 11.

Abstract

etv2 is an endothelial-specific ETS transcription factor that is essential for vascular differentiation and morphogenesis in vertebrates. While recent data suggest that Etv2 is dynamically regulated during vascular development, little is known about the mechanisms involved in this process. Here, we find that etv2 transcript and protein expression are highly dynamic during zebrafish vascular development, with both apparent during early somitogenesis and subsequently down-regulated as development proceeds. Inducible knockdown of Etv2 in zebrafish embryos prior to mid-somitogenesis stages, but not later, caused severe vascular defects, suggesting a specific role in early commitment of lateral mesoderm to the endothelial linage. Accordingly, Etv2-overexpressing cells showed an enhanced ability to commit to endothelial lineages in mosaic embryos. We further find that the etv2 3' untranslated region (UTR) is capable of repressing an endothelial autonomous transgene and contains binding sites for members of the let-7 family of microRNAs. Ectopic expression of let-7a could repress the etv2 3'UTR in sensor assays and was also able to block endogenous Etv2 protein expression, leading to concomitant reduction of endothelial genes. Finally, we observed that Etv2 protein levels persisted in maternal-zygotic dicer1 mutant embryos, suggesting that microRNAs contribute to its repression during vascular development. Taken together, our results suggest that etv2 acts during early development to specify endothelial lineages and is then down-regulated, in part through post-transcriptional repression by microRNAs, to allow normal vascular development.

摘要

ETV2 是一种内皮细胞特异性的 ETS 转录因子,对于脊椎动物的血管分化和形态发生是必不可少的。虽然最近的数据表明,Etv2 在血管发育过程中是动态调节的,但对于涉及这个过程的机制知之甚少。在这里,我们发现,etv2 的转录本和蛋白表达在斑马鱼血管发育过程中高度动态,在早期体节形成时都很明显,随后随着发育的进行而下调。在中体节形成之前而不是之后,在斑马鱼胚胎中诱导性敲低 Etv2 会导致严重的血管缺陷,这表明它在侧向中胚层向内皮谱系的早期特化中具有特定作用。相应地,Etv2 过表达的细胞在嵌合体胚胎中表现出增强的向内皮谱系特化的能力。我们进一步发现,etv2 的 3'非翻译区(UTR)能够抑制内皮自主转基因,并包含 let-7 家族 microRNAs 的结合位点。let-7a 的异位表达可以在传感器测定中抑制 etv2 的 3'UTR,并能够阻断内源性 Etv2 蛋白表达,导致内皮基因的同时减少。最后,我们观察到 Etv2 蛋白水平在母-合子 dicer1 突变体胚胎中持续存在,这表明 microRNAs 有助于其在血管发育过程中的抑制作用。总之,我们的结果表明,etv2 在早期发育过程中起作用,以指定内皮谱系,然后通过 microRNAs 的转录后抑制部分下调,以允许正常的血管发育。

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