Arnold Sebastian J, Maretto Silvia, Islam Ayesha, Bikoff Elizabeth K, Robertson Elizabeth J
Wellcome Trust Centre for Human Genetics, University of Oxford, Roosevelt Drive, Oxford OX3 7BN, UK.
Dev Biol. 2006 Aug 1;296(1):104-18. doi: 10.1016/j.ydbio.2006.04.442.
Three closely related mammalian R-Smads, namely Smad1, Smad5 and Smad8, are activated by BMP receptors. Here we have taken a genetic approach to further dissect their possibly unique and/or shared roles during early mouse development. A Smad8.LacZ reporter allele was created to visualize Smad8 expression domains. Smad8 is initially expressed only in the visceral yolk sac (VYS) endoderm and shows a highly restricted pattern of expression in the embryo proper at later stages. In addition, Smad8 conditional and null alleles were engineered. All alleles clearly demonstrate that adult Smad8 homozygous mutants are viable and fertile. To elucidate gene dosage effects, we manipulated expression ratios of the three BMP R-Smads. Smad8 homozygotes also lacking one copy of Smad1 or Smad5 did not exhibit overt phenotypes, and the tissue disturbances seen in Smad1 or Smad5 null embryos were not exacerbated in the absence of Smad8. However, we discovered a profound genetic interaction between Smad1 and Smad5. Thus, as for Smad1 and Smad5 mutant embryos, Smad1+/-:Smad5+/- double heterozygotes die by E10.5 and display defects in allantois morphogenesis, cardiac looping and primordial germ cell (PGC) specification. These experiments demonstrate for the first time that Smad1 and Smad5 function cooperatively to govern BMP target gene expression in the early mammalian embryo.
三种密切相关的哺乳动物R-Smad蛋白,即Smad1、Smad5和Smad8,可被骨形态发生蛋白(BMP)受体激活。在此,我们采用遗传学方法进一步剖析它们在小鼠早期发育过程中可能独特和/或共有的作用。构建了一个Smad8.LacZ报告基因等位基因,以可视化Smad8的表达域。Smad8最初仅在内脏卵黄囊(VYS)内胚层中表达,在后期胚胎中呈现高度受限的表达模式。此外,还构建了Smad8条件性和缺失性等位基因。所有等位基因均清楚表明成年Smad8纯合突变体是可存活且可育的。为了阐明基因剂量效应,我们操纵了三种BMP R-Smad蛋白的表达比例。同时缺失一个Smad1或Smad5拷贝的Smad8纯合子未表现出明显的表型,在没有Smad8的情况下,Smad1或Smad5缺失胚胎中出现的组织紊乱并未加剧。然而,我们发现Smad1和Smad5之间存在深刻的遗传相互作用。因此,与Smad1和Smad5突变胚胎一样,Smad1+/-:Smad5+/-双杂合子在胚胎期10.5天死亡,并在尿囊形态发生、心脏环化和原始生殖细胞(PGC)特化方面表现出缺陷。这些实验首次证明Smad1和Smad5协同作用,在早期哺乳动物胚胎中调控BMP靶基因的表达。