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Cnbp ameliorates Treacher Collins Syndrome craniofacial anomalies through a pathway that involves redox-responsive genes

机译:Cnbp通过涉及氧化还原反应基因的途径改善了Treacher Collins综合征颅面畸形

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摘要

Treacher Collins Syndrome (TCS) is a rare congenital disease (1:50 000 live births) characterized by craniofacial defects, including hypoplasia of facial bones, cleft palate and palpebral fissures. Over 90% of the cases are due to mutations in the TCOF1 gene, which codifies the nucleolar protein Treacle. Here we report a novel TCS-like zebrafish model displaying features that fully recapitulate the spectrum of craniofacial abnormalities observed in patients. As it was reported for a Tcof1+/− mouse model, Treacle depletion in zebrafish caused reduced rRNA transcription, stabilization of Tp53 and increased cell death in the cephalic region. An increase of ROS along with the overexpression of redox-responsive genes was detected; furthermore, treatment with antioxidants ameliorated the phenotypic defects of craniofacial anomalies in TCS-like larvae. On the other hand, Treacle depletion led to a lowering in the abundance of Cnbp, a protein required for proper craniofacial development. Tcof1 knockdown in transgenic zebrafish overexpressing cnbp resulted in barely affected craniofacial cartilage development, reinforcing the notion that Cnbp has a role in the pathogenesis of TCS. The cnbp overexpression rescued the TCS phenotype in a dose-dependent manner by a ROS-cytoprotective action that prevented the redox-responsive genes' upregulation but did not normalize the synthesis of rRNAs. Finally, a positive correlation between the expression of CNBP and TCOF1 in mesenchymal cells from both control and TCS subjects was found. Based on this, we suggest CNBP as an additional target for new alternative therapeutic treatments to reduce craniofacial defects not only in TCS but also in other neurocristopathies.
机译:Treacher Collins综合征(TCS)是一种罕见的先天性疾病(1:50 000活产),其特征是颅面缺陷,包括面部骨骼发育不全,left裂和睑裂。超过90%的病例归因于TCOF1基因的突变,该突变编码了核仁蛋白Treacle。在这里,我们报告一个新颖的类似TCS的斑马鱼模型,该模型显示的特征可以完全概括患者观察到的颅面部异常的频谱。如针对Tcof1 +/- 小鼠模型的报道,斑马鱼中的网眼耗竭导致rRNA转录减少,Tp53稳定并增加了头部区域的细胞死亡。检测到ROS的增加以及氧化还原反应基因的过度表达。此外,用抗氧化剂治疗可改善TCS样幼虫颅面畸形的表型缺陷。另一方面,眼球的消耗导致Cnbp的丰度降低,Cnbp是适当的颅面发育所需的蛋白质。在过表达cnbp的转基因斑马鱼中Tcof1的敲低导致颅面软骨发育几乎没有受到影响,从而强化了Cnbp在TCS发病机理中起作用的观点。 cnbp的过表达通过ROS细胞保护作用以剂量依赖的方式挽救了TCS表型,该作用阻止了氧化还原反应基因的上调,但并未使rRNA的合成正常化。最后,发现对照和TCS受试者的间充质细胞中CNBP和TCOF1的表达呈正相关。基于此,我们建议CNBP作为新的替代治疗方法的另一个目标,以减少不仅在TCS中而且在其他神经克里斯病中的颅面缺陷。

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