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Chd7 在斑马鱼中的作用:CHARGE 综合征的模型。

Role of Chd7 in zebrafish: a model for CHARGE syndrome.

机构信息

Sainte-Justine Hospital Research Center, Montreal, Quebec, Canada.

出版信息

PLoS One. 2012;7(2):e31650. doi: 10.1371/journal.pone.0031650. Epub 2012 Feb 20.

Abstract

CHARGE syndrome is caused by mutations in the CHD7 gene. Several organ systems including the retina, cranial nerves, inner ear and heart are affected in CHARGE syndrome. However, the mechanistic link between mutations in CHD7 and many of the organ systems dysfunction remains elusive. Here, we show that Chd7 is required for the organization of the neural retina in zebrafish. We observe an abnormal expression or a complete absence of molecular markers for the retinal ganglion cells and photoreceptors, indicating that Chd7 regulates the differentiation of retinal cells and plays an essential role in retinal cell development. In addition, zebrafish with reduced Chd7 display an abnormal organization and clustering of cranial motor neurons. We also note a pronounced reduction in the facial branchiomotor neurons and the vagal motor neurons display aberrant positioning. Further, these fish exhibit a severe loss of the facial nerves. Knock-down of Chd7 results in a curvature of the long body axis and these fish develop irregular shaped vertebrae and have a reduction in bone mineralization. Chd7 knockdown also results in a loss of proper segment polarity illustrated by flawed efnb2a and ttna expression, which is associated with later vascular segmentation defects. These critical roles for Chd7 in retinal and vertebral development were previously unrecognized and our results provide new insights into the role of Chd7 during development and in CHARGE syndrome pathogenesis.

摘要

CHARGE 综合征是由 CHD7 基因突变引起的。CHARGE 综合征会影响包括视网膜、颅神经、内耳和心脏在内的多个器官系统。然而,CHD7 基因突变与许多器官系统功能障碍之间的机制联系仍然难以捉摸。在这里,我们表明 Chd7 是斑马鱼神经视网膜组织的必要条件。我们观察到视网膜神经节细胞和光感受器的分子标记物表达异常或完全缺失,这表明 Chd7 调节视网膜细胞的分化,并在视网膜细胞发育中发挥重要作用。此外,Chd7 减少的斑马鱼显示颅运动神经元的异常组织和聚类。我们还注意到面部分支运动神经元的明显减少,迷走运动神经元的位置异常。此外,这些鱼表现出严重的面神经丧失。Chd7 的敲低导致长体轴的弯曲,这些鱼的椎骨形状不规则,并且骨矿化减少。Chd7 的敲低还导致 efnb2a 和 ttna 表达的缺陷,这与后来的血管分段缺陷相关的正确节极性丧失。Chd7 在视网膜和脊柱发育中的这些关键作用以前未被认识到,我们的结果为 Chd7 在发育和 CHARGE 综合征发病机制中的作用提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/96ac/3282775/2128c70d2eea/pone.0031650.g001.jpg

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