Maitra Meenakshi, Schluterman Marie K, Nichols Haley A, Richardson James A, Lo Cecilia W, Srivastava Deepak, Garg Vidu
Department of Pediatrics, University of Texas Southwestern Medical Center, Dallas, Texas 75390, USA.
Dev Biol. 2009 Feb 15;326(2):368-77. doi: 10.1016/j.ydbio.2008.11.004. Epub 2008 Nov 20.
Congenital heart disease is the most common type of birth defect with an incidence of 1%. Previously, we described a point mutation in GATA4 that segregated with cardiac defects in a family with autosomal dominant disease. The mutation (G296S) exhibited biochemical deficits and disrupted a novel interaction between Gata4 and Tbx5. To determine if Gata4 and Tbx5 genetically interact in vivo, we generated mice heterozygous for both alleles. We found that nearly 100% of mice heterozygous for Gata4 and Tbx5 were embryonic or neonatal lethal and had complete atrioventricular (AV) septal defects with a single AV valve and myocardial thinning. Consistent with this phenotype, Gata4 and Tbx5 are co-expressed in the developing endocardial cushions and myocardium. In mutant embryos, cardiomyocyte proliferation deficits were identified compatible with the myocardial hypoplasia. Similar to Gata4, Gata6 and Tbx5 are co-expressed in the embryonic heart, and the transcription factors synergistically activate the atrial natiuretic factor promoter. We demonstrate a genetic interaction between Gata6 and Tbx5 with an incompletely penetrant phenotype of neonatal lethality and thin myocardium. Gene expression analyses were performed on both sets of compound heterozygotes and demonstrated downregulation of alpha-myosin heavy chain only in Gata4/Tbx5 heterozygotes. These findings highlight the unique genetic interactions of Gata4 and Gata6 with Tbx5 for normal cardiac morphogenesis in vivo.
先天性心脏病是最常见的出生缺陷类型,发病率为1%。此前,我们描述了一个GATA4基因中的点突变,该突变在一个常染色体显性疾病家族中与心脏缺陷相关联。该突变(G296S)表现出生物化学缺陷,并破坏了Gata4与Tbx5之间一种新的相互作用。为了确定Gata4和Tbx5在体内是否存在基因相互作用,我们构建了两个等位基因均为杂合子的小鼠。我们发现,几乎100%的Gata4和Tbx5杂合子小鼠在胚胎期或新生儿期死亡,并有完全性房室间隔缺损,伴有单一房室瓣和心肌变薄。与这种表型一致,Gata4和Tbx5在发育中的心内膜垫和心肌中共同表达。在突变胚胎中,确定存在与心肌发育不全相符的心肌细胞增殖缺陷。与Gata4相似,Gata6和Tbx5在胚胎心脏中共同表达,并且这些转录因子协同激活心房利钠因子启动子。我们证明了Gata6和Tbx5之间存在基因相互作用,具有新生儿致死和心肌变薄的不完全显性表型。对两组复合杂合子进行了基因表达分析,结果表明仅在Gata4/Tbx5杂合子中α-肌球蛋白重链表达下调。这些发现突出了Gata4和Gata6与Tbx5在体内正常心脏形态发生中的独特基因相互作用。