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Mosaic partial deletion of PTPN12 in a child with interrupted aortic arch type A

机译:小儿主动脉弓A型中断的PTPT12的马赛克部分缺失

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Congenital heart malformations, including those of the great vessels, are among the most common human birth defects. The goal of this study was to identify the significance of a de novo mosaic PTPN12 partial deletion identified in a newborn with an interrupted aortic arch type A, ventricular septal defect, and pyloric stenosis. PTPN12, a downstream target of the RAS pathway, has a known role in endothelial cell adhesion and migration. Neither genetic nor genomic variants in PTPN12 have been described in a human patient; therefore, we evaluated the effect of ptpn12 in a mouse conditional knockout and zebrafish knockdown model to determine the significance of a loss in gene expression. Observed loss of ptpn12 expression in zebrafish resulted in abnormal branchial arch and tail vasculature patterns, with reduced blood flow throughout the animal. This phenotype was supported by anomalous vasculature in a conditional Ptpn12 mouse knockout. Given the novel co-occurrence of interrupted aortic arch type A, ventricular septal defect, and partial deletion of PTPN12 in the patient, as well as vascular phenotypes in Ptpn12 mouse and ptpn12 zebrafish models, it is likely that PTPN12 has a significant role in cardiovascular development and vessel formation during human embryonic development. Furthermore, the partial deletion of PTPN12 lead to interrupted aortic arch type A in this child and may represent a novel condition caused by a null mutation in the RAS pathway. (c) 2015 Wiley Periodicals, Inc.
机译:先天性心脏畸形,包括大血管畸形,是人类最常见的出生缺陷。这项研究的目的是确定在患有A型主动脉弓中断,室间隔缺损和幽门狭窄的新生儿中从头马赛克PTPN12部分缺失的重要性。 PTPN12是RAS途径的下游靶标,在内皮细胞粘附和迁移中具有已知作用。 PTPN12的遗传变异和基因组变异均未在人类患者中描述。因此,我们评估了ptpn12在小鼠条件性基因敲除和斑马鱼基因敲除模型中的作用,以确定基因表达缺失的重要性。观察到斑马鱼中ptpn12表达的丧失导致异常的弓形弓和尾部脉管系统模式,整个动物的血流量减少。此表型由条件性Ptpn12小鼠基因敲除中的异常脉管系统支持。鉴于患者中A型主动脉弓中断,室间隔缺损和PTPN12部分缺失以及血管表型的新颖共存,以及PTPN12小鼠和ptpn12斑马鱼模型中的血管表型,PTPN12可能在心血管疾病中具有重要作用人类胚胎发育过程中的发育和血管形成。此外,PTPN12的部分缺失导致该孩子的主动脉弓A型中断,可能代表由RAS途径无效突变引起的新病状。 (c)2015年威利期刊有限公司

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