Wang D Z, Hammond V E, Abud H E, Bertoncello I, McAvoy J W, Bowtell D D
Trescowthick Research Laboratories, Peter MacCallum Cancer Institute, East Melbourne, Victoria, Australia.
Genes Dev. 1997 Feb 1;11(3):309-20. doi: 10.1101/gad.11.3.309.
We have investigated the role of the mammalian Son of sevenless 1 (Sos1) protein in growth factor signaling in vivo by generating mice and cell lines that lacked the Sos1 protein. Homozygous null embryos were smaller than normal, died mid-gestation with cardiovascular and yolk sac defects, and their fibroblasts showed reduced mitogen-activated protein kinase activation in response to epidermal growth factor (EGF). An intercross of mice mutant for Sos1 and the EGF receptor (EGFR) demonstrated that a heterozygous mutation in Sos1 dominantly enhanced the phenotype of a weak allele of the EGFR allele (wa-2). These animals had distinctive eye defects that closely resembled those seen in mice that were null for the EGFR or its ligand, TGF alpha. Our findings provide the first demonstration of a functional requirement for Sos1 in growth factor signaling in vivo. They also show that the genetic test of enhancement of weak receptor allele by heterozygous mutation in one component represents a powerful tool for analyzing the ras pathway in mammals.
我们通过培育缺乏Sos1蛋白的小鼠和细胞系,研究了哺乳动物七号缺失蛋白之子1(Sos1)在体内生长因子信号传导中的作用。纯合缺失胚胎比正常胚胎小,在妊娠中期死于心血管和卵黄囊缺陷,其成纤维细胞对表皮生长因子(EGF)的反应显示丝裂原活化蛋白激酶激活减少。Sos1和表皮生长因子受体(EGFR)突变小鼠的杂交表明,Sos1中的杂合突变显著增强了EGFR等位基因弱等位基因(wa-2)的表型。这些动物有独特的眼部缺陷,与EGFR或其配体TGFα缺失的小鼠所见缺陷非常相似。我们的研究结果首次证明了Sos1在体内生长因子信号传导中的功能需求。它们还表明,通过一个组分中的杂合突变增强弱受体等位基因的基因测试是分析哺乳动物ras途径的有力工具。