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The Axenfeld–Rieger Syndrome Gene

机译:Axenfeld-Rieger综合征基因

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摘要

Precise spatiotemporal expression of the Nodal-Lefty-Pitx2 cascade in the lateral plate mesoderm establishes the left–right axis, which provides vital cues for correct organ formation and function. Mutations of one cascade constituent PITX2 and, separately, the Forkhead transcription factor FOXC1 independently cause a multi-system disorder known as Axenfeld–Rieger syndrome (ARS). Since cardiac involvement is an established ARS phenotype and because disrupted left–right patterning can cause congenital heart defects, we investigated in zebrafish whether foxc1 contributes to organ laterality or situs. We demonstrate that CRISPR/Cas9-generated foxc1a and foxc1b mutants exhibit abnormal cardiac looping and that the prevalence of cardiac situs defects is increased in foxc1a−/−; foxc1b−/− homozygotes. Similarly, double homozygotes exhibit isomerism of the liver and pancreas, which are key features of abnormal gut situs. Placement of the asymmetric visceral organs relative to the midline was also perturbed by mRNA overexpression of foxc1a and foxc1b. In addition, an analysis of the left–right patterning components, identified in the lateral plate mesoderm of foxc1 mutants, reduced or abolished the expression of the NODAL antagonist lefty2. Together, these data reveal a novel contribution from foxc1 to left–right patterning, demonstrating that this role is sensitive to foxc1 gene dosage, and provide a plausible mechanism for the incidence of congenital heart defects in Axenfeld–Rieger syndrome patients.
机译:在横向板Mesoderm中的Nodal-Lefty-pitx2级联的精确时尚表达建立了左右轴,这为正确的器官形成和功能提供了重要的提示。一个级联成分PITX2的突变和分别的叉头转录因子FoxC1独立地引起称为Axenfeld-Rieger综合征(ARS)的多系统障碍。由于心脏受累是成熟的ARS表型,因为破坏了左右图案可以引起先天性心脏缺陷,我们在斑马鱼中调查了Foxc1是否有助于器官横向或跖。我们证明CRISPR / CAS9产生的FOXC1A和FOXC1B突变体表现出异常的心脏循环,并且在FOXC1A - / - 中的心脏样力缺陷的患病率增加了 - / - ; Foxc1b - / - 纯合子。类似地,双纯合蛋白表现出肝脏和胰腺的异构性,这是肠道异常的关键特征。相对于中线的不对称内脏器官的放置也受到FoxC1a和FoxC1b的mRNA过表达的扰动。此外,在FoxC1突变体的横向板中胚层中鉴定的左右图案化组分的分析,减少或废除了节点拮抗剂左侧的表达。这些数据在一起揭示了FoxC1对左右图案的新贡献,证明这种作用对FoxC1基因剂量敏感,并为Axenfeld-Rieger综合征患者的先天性心脏缺陷的发病率提供合理的机制。

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