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Distinct cardiac malformations caused by absence of connexin 43 in the neural crest and in the non-crest neural tube.

机译:由神经rest和非rest神经管中缺乏连接蛋白43引起的明显心脏畸形。

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Connexin 43 (Cx43) is expressed in the embryonic heart, cardiac neural crest (CNC) and neural tube, and germline knockout (KO) of Cx43 results in aberrant cardiac outflow tract (OFT) formation and abnormal coronary deployment. Prior studies suggest a vital role for CNC expression of Cx43 in heart development. Surprisingly, we found that conditional knockout (CKO) of Cx43 in the dorsal neural tube and CNC mediated by Wnt1-Cre failed to recapitulate the Cx43-null OFT phenotype, although coronary vasculature was abnormal in this mutant line. A broader CKO mediated by P3pro (Pax3)-Cre, involving both ventral and dorsal aspects of the thoracic neural tube and CNC, resulted in infundibular bulging and coronary anomalies similar to those seen in germline Cx43-null hearts. P3pro-Cre-mediated loss of Cx43 in the neural tube was characterized by a late phase of cellular delamination from the dorsal and lateral neural tube, a markedly increased abundance of neuroepithelium-derived cells outside of the neural tubeand an excess of such cells infiltrating the heart and infundibulum. Thus, expression of Cx43 in the CNC is crucial for normal coronary deployment, but Cx43 is not required in the CNC for normal OFT morphogenesis. Rather, this study suggests a novel function for Cx43 in which Cx43 acts through non-crest neuroepithelial cells to suppress cellular delamination from the neural tube and thereby preserve normal OFT development.
机译:连接蛋白43(Cx43)在胚胎心脏,心脏神经rest(CNC)和神经管中表达,Cx43的种系敲除(KO)导致异常的心脏流出道(OFT)形成和异常的冠状动脉部署。先前的研究表明Cx43的CNC表达在心脏发育中起着至关重要的作用。出人意料的是,我们发现在Wnt1-Cre介导的背神经管和CNC中Cx43的条件性敲除(CKO)无法概括Cx43-null的OFT表型,尽管在该突变株中冠状动脉系统异常。由P3pro(Pax3)-Cre介导的更广泛的CKO,涉及胸部神经管和CNC的腹侧和背侧,导致漏斗状鼓胀和冠状动脉异常,类似于在种系Cx43-null心脏中看到的异常。 P3pro-Cre介导的神经管中Cx43的丢失的特征是晚期从背侧神经管和外侧神经管中发生细胞分层,神经管外部神经上皮来源的细胞大量增加,并且过多的此类细胞浸润了神经管。心脏和漏斗。因此,Cx43在CNC中的表达对于正常的冠状动脉部署至关重要,但是对于正常的OFT形态发生,CNC中不需要Cx43。相反,这项研究提出了Cx43的新功能,其中Cx43通过非波峰神经上皮细胞发挥作用,抑制细胞从神经管的分层,从而保持正常的OFT发育。

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