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Ventricular septal defect and cardiomyopathy in mice lacking the transcription factor CHF1/Hey2

机译:缺乏转录因子CHF1 / Hey2的小鼠室间隔缺损和心肌病

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Ventricular septal defects are common in human infants, but the genetic programs that control ventricular septation are poorly understood. Here we report that mice with a targeted disruption of the cardiovascular basic helix-loop-helix factor (CHF)1/Hey2 gene show isolated ventricular septal defects. These defects result primarily in failure to thrive. Mice often succumbed within the first 3 wk after birth and showed pulmonary and liver congestion. The penetrance of this phenotype varied, depending on genetic background, suggesting the presence of modifier genes. Expression patterns of other cardiac-specific genes were not affected. Of the few animals on a mixed genetic background that survived to adulthood, most developed a cardiomyopathy but did not have ventricular septal defects. Our results indicate that CHF1 plays an important role in regulation of ventricular septation in mammalian heart development and is important for normal myocardial contractility. These mice provide a useful model for the study of the ontogeny and natural history of ventricular septal defects and cardiomyopathy.
机译:心室间隔缺损在人类婴儿中很常见,但是控制心室分隔的遗传程序知之甚少。在这里,我们报告有针对性的破坏心血管基本螺旋-环-螺旋因子(CHF)1 / Hey2基因的小鼠显示孤立的室间隔缺损。这些缺陷主要导致无法发展。小鼠通常在出生后的前三周内死亡,并表现出肺和肝脏充血。该表型的渗透率根据遗传背景而变化,表明存在修饰基因。其他心脏特异性基因的表达模式不受影响。在少数具有混合遗传背景且能存活到成年的动物中,大多数会发展为心肌病,但没有心室间隔缺损。我们的结果表明,CHF1在调节哺乳动物心脏发育中的心室分隔中起着重要作用,并且对于正常的心肌收缩性也很重要。这些小鼠为研究室间隔缺损和心肌病的个体发育和自然史提供了有用的模型。

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