Kuo C T, Morrisey E E, Anandappa R, Sigrist K, Lu M M, Parmacek M S, Soudais C, Leiden J M
Department of Medicine, The University of Chicago, Illinois 60637, USA.
Genes Dev. 1997 Apr 15;11(8):1048-60. doi: 10.1101/gad.11.8.1048.
Previous studies have suggested that the GATA4 transcription factor plays an important role in regulating mammalian cardiac development. In the studies described in this report we have used gene targeting to produce GATA4-deficient mice. Homozygous GATA4-deficient (GATA4-/-) mice died between 8.5 and 10.5 days post coitum (dpc). GATA4-/- embryos displayed severe defects in both rostral-to-caudal and lateral-to-ventral folding, which were reflected in a generalized disruption of the ventral body pattern. This resulted in the defective formation of an organized foregut and anterior intestinal pore, the failure to close both the amniotic cavity and yolk sac, and the uniform lack of a ventral pericardial cavity and heart tube. Analysis of cardiac development in the GATA4-/- mice demonstrated that these embryos developed splanchnic mesoderm, which differentiated into primitive cardiac myocytes that expressed contractile proteins. However, consistent with the observed defect in ventral morphogenesis, these GATA4-/- procardiomyocytes failed to migrate to the ventral midline to form a linear heart tube and instead formed aberrant cardiac structures in the anterior and dorsolateral regions of the embryo. The defect in ventral migration of the GATA4-/- procardiomyocytes was not cell intrinsic because GATA4-/- cardiac myocytes and endocardial cells populated the hearts of GATA4-/- -C57BL/6 chimeric mice. Taken together, these results demonstrated that GATA4 is not essential for the specification of the cardiac cell lineages. However, they define a critical role for GATA4 in regulating the rostral-to-caudal and lateral-to-ventral folding of the embryo that is needed for normal cardiac morphogenesis.
以往的研究表明,GATA4转录因子在调控哺乳动物心脏发育过程中发挥着重要作用。在本报告所述的研究中,我们利用基因靶向技术培育出了GATA4基因缺失的小鼠。纯合GATA4基因缺失(GATA4-/-)小鼠在交配后8.5至10.5天死亡。GATA4-/-胚胎在头端到尾端以及外侧到腹侧的折叠过程中均表现出严重缺陷,这反映在腹侧身体模式的普遍紊乱上。这导致了有组织的前肠和前肠孔形成缺陷,羊膜腔和卵黄囊无法闭合,以及腹侧心包腔和心管普遍缺失。对GATA4-/-小鼠心脏发育的分析表明,这些胚胎发育出了脏壁中胚层,其分化为表达收缩蛋白的原始心肌细胞。然而,与观察到的腹侧形态发生缺陷一致,这些GATA4-/-前心肌细胞未能迁移至腹侧中线以形成线性心管,而是在胚胎的前部和背外侧区域形成了异常的心脏结构。GATA4-/-前心肌细胞腹侧迁移的缺陷并非细胞内在因素导致,因为GATA4-/-心肌细胞和心内膜细胞在GATA4-/- -C57BL/6嵌合小鼠的心脏中聚集。综上所述,这些结果表明GATA4对于心脏细胞谱系的特化并非必不可少。然而,它们确定了GATA4在调节胚胎正常心脏形态发生所需的头端到尾端以及外侧到腹侧折叠过程中的关键作用。