Goudreau Guy, Petrou Petros, Reneker Lixing W, Graw Jochen, Löster Jana, Gruss Peter
Department of Molecular Cell Biology, Max Planck Institute of Biophysical Chemistry, Am Fassberg, 37077 Göttingen, Germany.
Proc Natl Acad Sci U S A. 2002 Jun 25;99(13):8719-24. doi: 10.1073/pnas.132195699. Epub 2002 Jun 18.
Pax6 is a key regulator of eye development in vertebrates and invertebrates, and heterozygous loss-of-function mutations of the mouse Pax6 gene result in the Small eye phenotype, in which a small lens is a constant feature. To provide an understanding of the mechanisms underlying this haploinsufficient phenotype, we evaluated in Pax6 heterozygous mice the effects of reduced Pax6 gene dosage on the activity of other transcription factors regulating eye formation. We found that Six3 expression was specifically reduced in lenses of Pax6 heterozygous mouse embryos. Interactions between orthologous genes from the Pax and Six families have been identified in Drosophila and vertebrate species, and we examined the control of Pax6 and Six3 gene expression in the developing mouse lens. Using in vitro and transgenic approaches, we found that either transcription factor binds regulatory sequences from the counterpart gene and that both genes mutually activate their expression. These studies define a functional relationship in the lens in which Six3 expression is dosage-dependent on Pax6 and where, conversely, Six3 activates Pax6. Accordingly, we show a rescue of the Pax6 haploinsufficient lens phenotype after lens-specific expression of Six3 in transgenic mice. This phenotypic rescue was accompanied by cell proliferation and activation of the platelet-derived growth factor alpha-R/cyclin D1 signaling pathway. Our findings thus provide a mechanism implicating gene regulatory interactions between Pax6 and Six3 in the tissue-specific defects found in Pax6 heterozygous mice.
Pax6是脊椎动物和无脊椎动物眼睛发育的关键调节因子,小鼠Pax6基因的杂合功能丧失突变会导致小眼表型,其中晶状体小是一个恒定特征。为了理解这种单倍剂量不足表型的潜在机制,我们在Pax6杂合小鼠中评估了Pax6基因剂量减少对其他调节眼睛形成的转录因子活性的影响。我们发现Six3的表达在Pax6杂合小鼠胚胎的晶状体中特异性降低。在果蝇和脊椎动物物种中已鉴定出Pax和Six家族直系同源基因之间的相互作用,我们研究了发育中的小鼠晶状体中Pax6和Six3基因表达的调控。使用体外和转基因方法,我们发现这两种转录因子都结合对应基因的调控序列,并且这两个基因相互激活它们的表达。这些研究定义了晶状体中的一种功能关系,其中Six3的表达在剂量上依赖于Pax6,反之,Six3激活Pax6。因此,我们在转基因小鼠晶状体特异性表达Six3后显示出Pax6单倍剂量不足晶状体表型的挽救。这种表型挽救伴随着细胞增殖和血小板衍生生长因子α-R/细胞周期蛋白D1信号通路的激活。因此,我们的研究结果提供了一种机制,表明Pax6和Six3之间的基因调控相互作用与Pax6杂合小鼠中发现的组织特异性缺陷有关。