Moens C B, Stanton B R, Parada L F, Rossant J
Division of Molecular and Developmental Biology, Samuel Lunenfeld Research Institute, Toronto, Ontario, Canada.
Development. 1993 Oct;119(2):485-99. doi: 10.1242/dev.119.2.485.
Two types of mutant allele, one leaky and one null, have been generated by gene targeting at the N-myc locus in embryonic stem cells and the phenotypes of mice homozygous for these mutations have been described. These mutations have shown that N-myc has a number of functions during development, including a role in branching morphogenesis in the lung, which manifests itself at birth in mice homozygous for the leaky allele, and roles in the development of the mesonephric tubules, the neuroepithelium, the sensory ganglia, the gut and the heart, which become evident at midgestation in embryos homozygous for the null allele. In an attempt to define roles for N-myc at other stages of development, we have combined the two types of N-myc mutant allele in a compound heterozygote that as a result contains approximately 15% of normal levels of N-Myc protein. Compound heterozygotes died during gestation at a time intermediate to the times of death of embryos homozygous for either mutation individually, and their death appeared to result from cardiac failure stemming from hypoplasia of the compact subepicardial layer of the myocardium. Investigation of the expression pattern of N-myc and various markers of differentiation in wild-type and compound heterozygote mutant hearts has suggested that N-myc may function in maintaining the proliferation and/or preventing the differentiation of compact layer myocytes. This study illustrates the importance of generating different mutations at a given locus to elucidate fully the function of a particular gene during development.
通过对胚胎干细胞中N-myc基因座进行基因打靶,已产生了两种类型的突变等位基因,一种是渗漏型,一种是无效型,并且已经描述了这些突变的纯合子小鼠的表型。这些突变表明,N-myc在发育过程中具有多种功能,包括在肺分支形态发生中的作用,这在渗漏型等位基因纯合子小鼠出生时表现出来;以及在中肾管、神经上皮、感觉神经节、肠道和心脏发育中的作用,这些作用在无效型等位基因纯合子胚胎妊娠中期变得明显。为了确定N-myc在发育的其他阶段的作用,我们将两种类型的N-myc突变等位基因组合在一个复合杂合子中,结果该复合杂合子含有约15%的正常水平的N-Myc蛋白。复合杂合子在妊娠期间死亡,死亡时间介于单独的两种突变纯合子胚胎死亡时间之间,它们的死亡似乎是由于心肌致密心外膜下层发育不全导致的心力衰竭。对野生型和复合杂合子突变心脏中N-myc的表达模式以及各种分化标志物的研究表明,N-myc可能在维持致密层心肌细胞的增殖和/或阻止其分化中发挥作用。这项研究说明了在给定基因座产生不同突变以充分阐明特定基因在发育过程中的功能的重要性。