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首页> 外文期刊>Molecular and Cellular Biology >The RNA-Binding Protein Elavl1/HuR Is Essential for Placental Branching Morphogenesis and Embryonic Development
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The RNA-Binding Protein Elavl1/HuR Is Essential for Placental Branching Morphogenesis and Embryonic Development

机译:RNA结合蛋白Elavl1 / HuR是胎盘分支形态发生和胚胎发育必不可少的。

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摘要

HuR is an RNA-binding protein implicated in a diverse array of pathophysiological processes due to its effects on the posttranscriptional regulation of AU- and U-rich mRNAs. Here we reveal HuR's requirement in embryonic development through its genetic ablation. Obligatory HuR-null embryos exhibited a stage retardation phenotype and failed to survive beyond midgestation. By means of conditional transgenesis, we restricted HuR's mutation in either embryonic or endothelial compartments to demonstrate that embryonic lethality is consequent to defects in extraembryonic placenta. HuR's absence impaired the invagination of allantoic capillaries into the chorionic trophoblast layer and the differentiation of syncytiotrophoblast cells that control the morphogenesis and vascularization of the placental labyrinth and fetal support. HuR-null embryos rescued from these placental defects proceeded to subsequent developmental stages but displayed defects in skeletal ossification, fusions in limb elements, and asplenia. By coupling gene expression measurements, data meta-analysis, and HuR-RNA association assays, we identified transcription and growth factor mRNAs controlled by HuR, primarily at the posttranscriptional level, to guide morphogenesis, specification, and patterning. Collectively, our data demonstrate the dominant role of HuR in organizing gene expression programs guiding placental labyrinth morphogenesis, skeletal specification patterns, and splenic ontogeny.
机译:HuR是一种RNA结合蛋白,因其对富含AU和U的mRNA的转录后调控而起作用,涉及多种病理生理过程。在这里,我们通过基因消融揭示了HuR在胚胎发育中的需求。必需的HuR-null胚胎表现出阶段性延迟表型,并且不能存活到中期。通过条件转基因,我们限制了HuR在胚胎或内皮区室的突变,以证明胚胎致死性是胚胎外胎盘的缺陷所致。 HuR的缺失会损害尿囊毛细血管向绒毛膜滋养层的内陷,以及合体滋养层细胞的分化,从而控制胎盘迷宫和胎儿支持的形态和血管形成。从这些胎盘缺损中拯救出来的HuR-null胚胎进入了后续的发育阶段,但在骨骼骨化,四肢融合和无力方面表现出缺陷。通过耦合基因表达测量,数据荟萃分析和HuR-RNA关联测定,我们鉴定了受HuR控制的转录和生长因子mRNA,主要在转录后水平上,以指导形态发生,规范和模式化。总的来说,我们的数据证明了HuR在组织基因表达程序中的主导作用,该程序指导胎盘迷宫形态发生,骨骼规格模式和脾发育。

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