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首页> 外文期刊>Development >Downregulation of atrial markers during cardiac chamber morphogenesis is irreversible in murine embryos.
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Downregulation of atrial markers during cardiac chamber morphogenesis is irreversible in murine embryos.

机译:心室形态发生过程中心房标志物的下调在鼠胚胎中是不可逆的。

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Vertebrate cardiogenesis is a complex process involving multiple, distinct tissue types which interact to form a four-chambered heart. Molecules have been identified whose expression patterns co-segregate with the maturation of the atrial and ventricular muscle cell lineages. It is not currently known what role intrinsic events versus external influences play in cardiac chamber morphogenesis. We developed novel, fluorescent-based, myocardial, cellular transplantation systems in order to study these questions in murine embryos and report the irreversible nature of chamber specification with respect to the downregulation of atrial myosin light chain 2 (MLC-2a) and alpha myosin heavy chain (alpha-MHC). Grafting ventricular cells into the atrial chamber does not result in upregulation of MLC-2a expression in ventricular cells. Additionally, wild-type ventricular muscle cells grafted into the wild-type background appropriately downregulate MLC-2a and alpha-MHC. Finally, grafting of RXRalpha gene-deficient ventricular muscle cells into the ventricular chambers of wild-type embryos does not rescue the persistent expression of MLC-2a, providing further evidence that ventricular chamber maturation is an early event. These studies provide a new approach for the mechanistic dissection of critical signaling events during cardiac chamber growth, maturation and morphogenesis in the mouse, and should find utility with other approaches of cellular transplantation in murine embryos. These experiments document the irreversible nature of the downregulation of atrial markers after the onset of cardiogenesis during ventricular chamber morphogenesis and temporally define the response of cardiac muscle cells to signals regulating chamber specification.
机译:脊椎动物的心脏发生是一个复杂的过程,涉及多个不同的组织类型,它们相互作用形成一个四腔心脏。已经鉴定出其表达模式与心房和心室肌细胞谱系的成熟共分离的分子。目前尚不清楚内在事件与外部影响在心室形态发生中起什么作用。为了研究鼠胚胎中的这些问题并报告关于心房肌球蛋白轻链2(MLC-2a)和α肌球蛋白重链的下调的腔室规格的不可逆性,我们开发了基于荧光的新型心肌细胞移植系统。链(alpha-MHC)。将心室细胞移植到心房中不会导致心室细胞中MLC-2a表达的上调。此外,移植到野生型背景中的野生型心室肌细胞可适当下调MLC-2a和α-MHC。最后,将RXRalpha基因缺陷的心室肌细胞移植到野生型胚的心室中不能拯救MLC-2a的持续表达,这提供了进一步的证据表明心室成熟是早期事件。这些研究为小鼠心腔生长,成熟和形态发生过程中的关键信号事件的机械解剖提供了一种新方法,并且应该与小鼠胚胎细胞移植的其他方法一起使用。这些实验记录了心室室形态发生过程中发生心脏病后心房标志物下调的不可逆性,并暂时定义了心肌细胞对调节室规格信号的反应。

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