Department of Genetics, Harvard Medical School, Boston, MA 02115, USA.
Proc Natl Acad Sci U S A. 2010 Jan 5;107(1):87-91. doi: 10.1073/pnas.0912870107. Epub 2009 Dec 14.
MicroRNAs (miRNAs) have previously been implicated in a number of developmental processes, including development of the ventricular myocardium of the heart. To determine what, if any, additional roles miRNAs play in cardiogenesis, we deleted the miRNA-processing enzyme Dicer specifically in the developing murine heart. Embryos lacking cardiac Dicer lived longer than reported in previous studies using different alleles to remove cardiac Dicer activity and displayed a highly penetrant phenotype of double outlet right ventricle with a concurrent ventricular septal defect. Before the defect's onset, Pitx2c and Sema3c, both required for outflow tract morphogenesis, were up-regulated in Dicer-deficient hearts. Interestingly, mesenchymal apoptosis in the outflow tract normally required for outflow tract alignment was greatly decreased in the mutants, likely contributing directly to the observed phenotype. In sum, we demonstrate here a specific developmental process, that of outflow tract morphogenesis, being hindered by the deletion of miRNAs during cardiogenesis.
MicroRNAs (miRNAs) 先前已被牵涉到许多发育过程中,包括心脏心室心肌的发育。为了确定 miRNA 在心脏发生中是否扮演其他任何角色,我们特异性地在发育中的鼠心脏中缺失 miRNA 加工酶 Dicer。缺乏心脏 Dicer 的胚胎比以前使用不同等位基因去除心脏 Dicer 活性的研究中报道的存活时间更长,并表现出高外显率的右心室双出口伴有室间隔缺损的表型。在缺陷发生之前,流出道形态发生所需的 Pitx2c 和 Sema3c 在 Dicer 缺陷型心脏中上调。有趣的是,流出道中通常用于流出道对齐的间质细胞凋亡在突变体中大大减少,这可能直接导致观察到的表型。总之,我们在这里证明了一个特定的发育过程,即流出道形态发生,在心脏发生过程中被 miRNA 的缺失所阻碍。