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14-3-3ζ loss leads to neonatal lethality by microRNA-126 downregulation-mediated developmental defects in lung vasculature

机译:14-3-3ζ损失通过MicroRNA-126下调介导的肺脉管系统发育缺陷导致新生儿致死性

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摘要

Abstract Background The 14-3-3 family of proteins have been reported to play an important role in development in various mouse models, but the context specific developmental functions of 14-3-3ζ remain to be determined. In this study, we identified a context specific developmental function of 14-3-3ζ. Results Targeted deletion of 14-3-3ζ in the C57Bl/6J murine genetic background led to neonatal lethality due to respiratory distress and could be rescued by out-breeding to the CD-1 or backcrossing to the FVB/NJ congenic background. Histological analysis of lung sections from 18.5 days post coitum embryos (dpc) showed that 14-3-3ζ−/− lung development is arrested at the pseudoglandular stage and exhibits vascular defects. The expression of miR-126, an endothelial-specific miRNA known to regulate lung vascular integrity was down-regulated in the lungs of the 14-3-3ζ−/− embryos in the C57Bl/6J background as compared to their wild-type counterparts. Loss of 14-3-3ζ in endothelial cells inhibited the angiogenic capability of the endothelial cells as determined by both trans-well migration assays and tube formation assays and these defects could be rescued by re-expressing miR-126. Mechanistically, loss of 14-3-3ζ led to reduced Erk1/2 phosphorylation resulting in attenuated binding of the transcription factor Ets2 on the miR-126 promoter which ultimately reduced expression of miR-126. Conclusion Our data demonstrates that miR-126 is an important angiogenesis regulator that functions downstream of 14-3-3ζ and downregulation of miR-126 plays a critical role in 14-3-3ζ-loss induced defects in lung vasculature in the C57Bl/6J genetic background.
机译:摘要背景14-3-3蛋白家族已被报道发挥在各种小鼠模型发展的重要作用,但14-3-3ζ上下文中的具体发展功能仍有待确定。在这项研究中,我们确定的14-3-3ζ上下文具体的发展功能。结果有针对性的14-3-3ζ缺失在C57BL / 6J小鼠的遗传背景导致新生儿杀伤力由于呼吸窘迫,并且可以通过外繁殖的CD-1或回交的FVB / NJ同类背景解救。从18.5天肺切片的组织学分析后表明,14-3-3ζ交配胚胎(DPC) - / - 肺发育是在假腺阶段和展品血管缺损被捕。 / - - 在14-3-3ζ的肺的miR-126,内皮-miRNA特异性的已知调节肺血管完整性的表达下调的胚胎在C57BL / 6J背景相比,它们的野生型对应物。在内皮细胞中的损失14-3-3ζ抑制通过测定和管形成测定和这些缺陷都反式井迁移测定可以通过以下方式救出内皮细胞的血管生成能力重新表达的miR-126。在机制上,导致的损失14-3-3ζ降低导致在与miR-126的启动子,其最终降低的miR-126的表达的转录因子的ETS2减毒结合ERK1 / 2磷酸化。结论:我们的数据证实了miR-126是一种重要的血管生成调节器,其的14-3-3ζ下游和miR-126的下调功能起着在C57BL / 6J在14-3-3ζ损失引起的缺陷关键作用在肺脉管系统遗传背景。

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