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首页> 外文期刊>Journal of Molecular and Cellular Cardiology >Misexpression of Tbx18 in cardiac chambers of fetal mice interferes with chamber-specific developmental programs but does not induce a pacemaker-like gene signature
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Misexpression of Tbx18 in cardiac chambers of fetal mice interferes with chamber-specific developmental programs but does not induce a pacemaker-like gene signature

机译:Tbx18在胎鼠心脏腔室中的错误表达会干扰腔室特定的发育程序,但不会诱导起搏器样基因签名

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Initiation of cardiac excitation depends on a specialized group of cardiomyocytes at the venous pole of the heart, the sinoatrial node (SAN). The T-box transcription factor gene Tbx18 is expressed in the SAN myocardium and is required for formation of a large portion of the pacemaker. Previous studies suggested that Tbx18 is also sufficient to reprogram ventricular cardiomyocytes into SAN cells in rat, guinea-pig and pig hearts. To evaluate the consequences of misexpression of Tbx18 for imposing a nodal phenotype onto chamber myocardial cells in fetal mice, we used two independent conditional approaches with chamber-specific cre driver lines and an Hprt(Tbx18) misexpression allele. Myh6-Cre/+;Hprt(Tbx18/y) mice developed dilated atria with thickened walls, reduced right ventricles and septal defects that resulted in reduced embryonic and post-natal survival. Tagln-Cre/+;Hprt(Tbx18/y) mice exhibited slightly smaller hearts with rounded trabeculae that supported normal embryonic survival. Molecular analyses showed that the SAN gap junction and ion channel profile was not ectopically induced in chamber myocardium but the working myocardial gene program was partially inhibited in atria and ventricles of both misexpression models. Left atrial expression of Pitx2 was strongly repressed in Myh6-Cre/+;Hprt(Tbx18/y) embryos. We conclude that exclusion of Tbx18 expression from the developing atria and (right) ventricle is important to achieve normal cardiac left-right patterning and myocardial differentiation, and that Tbx18 is not sufficient to induce full SAN differentiation of chamber cardiomyocytes in fetal mice. 2016 Elsevier Ltd. All rights reserved.
机译:心脏兴奋的开始取决于心脏的静脉极,即窦房结(SAN)上的一组特殊的心肌细胞。 T-box转录因子基因Tbx18在SAN心肌中表达,是形成起搏器大部分的必需条件。先前的研究表明,Tbx18还足以将心室心肌细胞重编程为大鼠,豚鼠和猪心脏的SAN细胞。若要评估Tbx18的错表达对胎鼠的腔室心肌细胞施加淋巴结表型的后果,我们使用了两种独立的条件方法,分别处理了腔室特有的cre驱动物系和Hprt(Tbx18)错误表达等位基因。 Myh6-Cre / +; Hprt(Tbx18 / y)小鼠的心房扩张,壁增厚,右心室和间隔缺损减少,从而导致胚胎和产后存活期缩短。 Tagln-Cre / +; Hprt(Tbx18 / y)小鼠的心脏较小,圆形小梁呈圆形,支持正常的胚胎存活。分子分析表明,SAN缝隙连接和离子通道分布在室心肌中未异位诱导,但在两种错误表达模型的心房和心室中,正常的心肌基因程序均受到部分抑制。在Myh6-Cre / +; Hprt(Tbx18 / y)胚胎中,Pitx2的左心房表达被强烈抑制。我们得出的结论是,从发育中的心房和(右)心室中排除Tbx18表达对于实现正常的心脏左右模式和心肌分化很重要,并且Tbx18不足以在胎鼠中诱导室心肌细胞的完全SAN分化。 2016 Elsevier Ltd.保留所有权利。

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