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Chorioallantoic Fusion Defects and Embryonic Lethality Resulting from Disruption of Zfp36L1 a Gene Encoding a CCCH Tandem Zinc Finger Protein of the Tristetraprolin Family

机译:Zfp36L1Tristetraprolin家族的CCCH串联锌指蛋白编码基因Zfp36L1的破坏导致的绒毛囊性融合缺陷和胚胎致死率。

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摘要

The mouse gene Zfp36L1 encodes zinc finger protein 36-like 1 (Zfp36L1), a member of the tristetraprolin (TTP) family of tandem CCCH finger proteins. TTP can bind to AU-rich elements within the 3′-untranslated regions of the mRNAs encoding tumor necrosis factor (TNF) and granulocyte-macrophage colony-stimulating factor (GM-CSF), leading to accelerated mRNA degradation. TTP knockout mice exhibit an inflammatory phenotype that is largely due to increased TNF secretion. Zfp36L1 has activities similar to those of TTP in cellular RNA destabilization assays and in cell-free RNA binding and deadenylation assays, suggesting that it may play roles similar to those of TTP in mammalian physiology. To address this question we disrupted Zfp36L1 in mice. All knockout embryos died in utero, most by approximately embryonic day 11 (E11). Failure of chorioallantoic fusion occurred in about two-thirds of cases. Even when fusion occurred, by E10.5 the affected placentas exhibited decreased cell division and relative atrophy of the trophoblast layers. Although knockout embryos exhibited neural tube abnormalities and increased apoptosis within the neural tube and also generalized runting, these and other findings may have been due to deficient placental function. Embryonic expression of Zfp36L1 at E8.0 was greatest in the allantois, consistent with a potential role in chorioallantoic fusion. Fibroblasts derived from knockout embryos had apparently normal levels of fully polyadenylated compared to deadenylated GM-CSF mRNA and normal rates of turnover of this mRNA species, both sensitive markers of TTP deficiency in cells. We postulate that lack of Zfp36L1 expression during mid-gestation results in the abnormal stabilization of one or more mRNAs whose encoded proteins lead directly or indirectly to abnormal placentation and fetal death.
机译:小鼠基因Zfp36L1编码锌指蛋白36-like 1(Zfp36L1),它是串联CCCH指蛋白的tristetraprolin(TTP)家族的成员。 TTP可以与编码肿瘤坏死因子(TNF)和粒细胞巨噬细胞集落刺激因子(GM-CSF)的mRNA的3'-非翻译区域内的富AU元件结合,从而导致加速的mRNA降解。 TTP基因敲除小鼠表现出一种炎症表型,主要是由于TNF分泌增加。 Zfp36L1在细胞RNA失稳测定以及无细胞RNA结合和去甲腺苷酸测定中具有与TTP相似的活性,这表明它在哺乳动物生理学中可能起着与TTP相似的作用。为了解决这个问题,我们破坏了小鼠的Zfp36L1。所有敲除的胚胎都在子宫内死亡,大部分在大约胚胎第11天(E11)死亡。约三分之二的病例发生绒毛尿囊融合失败。即使发生融合,通过E10.5,受影响的胎盘也表现出减少的细胞分裂和滋养层的相对萎缩。尽管基因敲除的胚胎表现出神经管异常和神经管内凋亡增加以及泛发性侏儒症,但这些和其他发现可能是由于胎盘功能不足所致。 Zfp36L1在E8.0的胚表达在尿囊中最大,这与绒毛膜尿囊融合的潜在作用一致。与脱腺苷酸化的GM-CSF mRNA相比,从剔除胚胎衍生的成纤维细胞具有明显的正常水平,完全聚腺苷酸化和该mRNA种类的周转率正常,这都是细胞中TTP缺乏的敏感标志。我们推测孕中期缺乏Zfp36L1表达会导致其编码蛋白直接或间接导致异常胎盘形成和胎儿死亡的一种或多种mRNA异常稳定。

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