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The conditional connexin43G138R mouse mutant represents a new model of hereditary oculodentodigital dysplasia in humans

机译:条件connexin43G138R小鼠突变体代表了人类遗传性眼睑数字化发育不良的新模型

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摘要

Oculodentodigital dysplasia (ODDD) is a dominant negatively inherited disorder with variable but characteristic anomalies of the fingers and toes, eyes, face and teeth, which are caused by mutations in the connexin 43 (Cx43) gene. All mutations analyzed so far have a negative influence on the conductance through gap junctional channels and hemichannels, as well as trafficking of Cx43 protein in transfected cells. In this study, we inserted the human Cx43G138R point mutation into the mouse Cx43 gene and generated mice conditionally expressing this mutation. All ODDD phenotypic manifestations observed in humans, including syndactyly and enamel hypoplasia as well as craniofacial, bone and heart anomalies, were also observed with significant penetrance in Cx43G138R mice. When this mutation was specifically expressed in cardiomyocytes, characteristic alterations in the electrocardiogram and spontaneous arrhythmias were recorded. In vitro studies with Cx43G138R-expressing cells revealed loss of the Cx43 P2 phosphorylation state, which was also absent in the mutated hearts. This loss has previously been associated with gap junctional dysfunction and increased cellular ATP release. The Cx43G138R mutated mice show significantly increased arrhythmogeneity ex vivo in Langendorff experiments with explanted hearts and in vivo in particular under hypoxic conditions. Our results suggest that the increased activity of ATP-releasing channels in Cx43G138R mutated cardiomyocytes may further reduce the already decreased gap junctional communication and thus aggravate arrhythmogenesis in the mouse mutant.
机译:眼牙指发育不良(ODDD)是一种主要的负遗传性疾病,其手指和脚趾,眼睛,面部和牙齿的异常但特征异常,是由连接蛋白43(Cx43)基因突变引起的。迄今为止,所有分析的突变均对通过间隙连接通道和半通道的电导率以及转染细胞中Cx43蛋白的运输产生负面影响。在这项研究中,我们将人类Cx43G138R点突变插入小鼠Cx43基因中,并产生了有条件地表达此突变的小鼠。在Cx43G138R小鼠中,还观察到在人类中观察到的所有ODDD表型表现,包括综合征和牙釉质发育不全以及颅面,骨骼和心脏异常。当此突变在心肌细胞中特异性表达时,记录了心电图和自发性心律失常的特征性改变。用表达Cx43G138R的细胞进行的体外研究表明,Cx43 P2磷酸化状态的丧失在突变的心脏中也不存在。这种损失以前与间隙连接功能障碍和细胞ATP释放增加有关。 Cx43G138R突变的小鼠在Langendorff植入心脏的实验中,尤其是在低氧条件下的体内实验中,显示出明显增加的体外心律失常性。我们的结果表明,Cx43G138R突变的心肌细胞中ATP释放通道的活性增加可能会进一步减少已经减少的间隙连接通讯,从而加重小鼠突变体的心律失常。

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