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Current Perspectives in Cardiac Laterality

机译:心脏横向的最新观点

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The heart is the first organ to break symmetry in the developing embryo and onset of dextral looping is the first indication of this event. Looping is a complex process that progresses concomitantly to cardiac chamber differentiation and ultimately leads to the alignment of the cardiac regions in their final topology. Generation of cardiac asymmetry is crucial to ensuring proper form and consequent functionality of the heart, and therefore it is a highly regulated process. It has long been known that molecular left/right signals originate far before morphological asymmetry and therefore can direct it. The use of several animal models has led to the characterization of a complex regulatory network, which invariably converges on the Tgf-β signaling molecule Nodal and its downstream target, the homeobox transcription factor Pitx2. Here, we review current data on the cellular and molecular bases of cardiac looping and laterality, and discuss the contribution of Nodal and Pitx2 to these processes. A special emphasis will be given to the morphogenetic role of Pitx2 and to its modulation of transcriptional and functional properties, which have also linked laterality to atrial fibrillation.
机译:心脏是破坏发育中胚胎对称性的第一个器官,右旋环的发作是该事件的第一个迹象。循环是一个复杂的过程,伴随着心腔的分化而发展,并最终导致其最终拓扑结构中的心脏区域对齐。心脏不对称的产生对于确保心脏的正确形式和随后的功能至关重要,因此这是一个高度受控的过程。早就知道分子左/右信号在形态不对称之前就已经很久了,因此可以指导它。几种动物模型的使用导致了复杂调控网络的表征,该网络始终会聚集在Tgf-β信号分子Nodal及其下游靶标同源盒转录因子Pitx2上。在这里,我们回顾了当前关于心脏循环和偏侧性的细胞和分子基础的数据,并讨论了Nodal和Pitx2对这些过程的贡献。将特别强调Pitx2的形态发生作用及其对转录和功能特性的调节,这也将侧向性与心房纤颤联系起来。

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