首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Role of Endothelin-1/Endothelin-A receptor-mediated signaling pathway in the aortic arch patterning in mice.
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Role of Endothelin-1/Endothelin-A receptor-mediated signaling pathway in the aortic arch patterning in mice.

机译:内皮素-1 /内皮素A受体介导的信号通路在小鼠主动脉弓形成中的作用。

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摘要

The intercellular signaling mediated by endothelins and their G protein-coupled receptors has recently been shown to be essential for the normal embryonic development of subsets of neural crest cell derivatives. Endothelin-1 (ET-1) is proteolytically generated from its inactive precursor by endothelin-converting enzyme-1 (ECE-1) and acts on the endothelin-A (ETA) receptor. Genetic disruption of this ET-1/ECE-1/ETA pathway results in defects in branchial arch- derived craniofacial tissues, as well as defects in cardiac outflow and great vessel structures, which are derived from cephalic (cardiac) neural crest. In this study, in situ hybridization of ETA-/- and ECE-1(-)/- embryos with a cardiac neural crest marker, cellular retinoic acid-binding protein-1, shows that the migration of neural crest cells from the neural tube to cardiac outflow tract is not affected in these embryos. Immunostaining of an endothelial marker, platelet endothelial cell adhesion molecule CD-31, shows that the initial formation of the branchial arch arteries is not disturbed in ETA-/- or ECE-1(-)/- embryos. To visualize the subsequent patterning of arch vessels in detail, we generated ETA-/- or ECE-1(-)/- embryos that expressed an SM22alpha-lacZ marker transgene in arterial smooth muscle cells. Wholemount X-gal staining of these mutant embryos reveals that the abnormal regression and persistence of specific arch arteries results in disturbance of asymmetrical remodeling of the arch arteries. These defects include abnormal regression of arch arteries 4 and 6, enlargement of arch artery 3, and abnormal persistence of the bilateral ductus caroticus and right dorsal aorta. These abnormalities eventually lead to various types of great vessel malformations highly similar to those seen in neural crest-ablated chick embryos and human congenital cardiac defects. This study demonstrates that ET-1/ETA-mediated signaling plays an essential role in a complex process of aortic arch patterning by affecting the postmigratory cardiac neural crest cell development.
机译:最近已显示内皮素及其G蛋白偶联受体介导的细胞间信号传导对于神经c细胞衍生物亚群的正常胚胎发育至关重要。内皮素-1(ET-1)是由内皮素转化酶-1(ECE-1)从其非活性前体蛋白水解生成的,并作用于内皮素-A(ETA)受体。这种ET-1 / ECE-1 / ETA途径的遗传破坏会导致源自arch弓的颅面组织缺陷,以及源自头(心脏)神经cial的心脏流出和大血管结构缺陷。在这项研究中,ETA-/-和ECE-1(-)/-胚胎与心脏神经波峰标记,细胞视黄酸结合蛋白-1的原位杂交显示,神经波峰细胞从神经管迁移在这些胚胎中,心脏流出道不会受到影响。内皮标记物血小板内皮细胞粘附分子CD-31的免疫染色显示,在ETA-/-或ECE-1(-)/-胚胎中,arch弓动脉的初始形成没有受到干扰。若要可视化随后的弓形血管的详细图案,我们生成了ETA-/-或ECE-1(-)/-胚胎,它们在动脉平滑肌细胞中表达SM22alpha-lacZ标记转基因。这些突变体胚胎的整体X-gal染色显示,特定弓形动脉的异常消退和持续存在会导致弓形动脉非对称重塑的紊乱。这些缺陷包括弓形动脉4和6的异常消退,弓形动脉3的增大,以及双侧导管和右背主动脉的异常持续性。这些异常最终导致各种类型的大血管畸形,与在神经c消融的雏鸡胚胎和人类先天性心脏缺陷中所见的畸形高度相似。这项研究表明,ET-1 / ETA介导的信号传导通过影响移民后心脏神经c细胞的发育在复杂的主动脉弓形成过程中起着至关重要的作用。

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