Department of Medical Biotechnologies, Section of Histology and Embryology, University of Padua, viale Colombo 3, 35126 Padua, Italy.
Development. 2010 Aug 1;137(15):2571-8. doi: 10.1242/dev.053801. Epub 2010 Jun 23.
The definition of embryonic potency and induction of specific cell fates are intimately linked to the tight control over TGFbeta signaling. Although extracellular regulation of ligand availability has received considerable attention in recent years, surprisingly little is known about the intracellular factors that negatively control Smad activity in mammalian tissues. By means of genetic ablation, we show that the Smad4 inhibitor ectodermin (Ecto, also known as Trim33 or Tif1gamma) is required to limit Nodal responsiveness in vivo. New phenotypes, which are linked to excessive Nodal activity, emerge from such a modified landscape of Smad responsiveness in both embryonic and extra-embryonic territories. In extra-embryonic endoderm, Ecto is required to confine expression of Nodal antagonists to the anterior visceral endoderm. In trophoblast cells, Ecto precisely doses Nodal activity, balancing stem cell self-renewal and differentiation. Epiblast-specific Ecto deficiency shifts mesoderm fates towards node/organizer fates, revealing the requirement of Smad inhibition for the precise allocation of cells along the primitive streak. This study unveils that intracellular negative control of Smad function by ectodermin/Tif1gamma is a crucial element in the cellular response to TGFbeta signals in mammalian tissues.
胚胎潜能的定义和特定细胞命运的诱导与 TGFβ 信号的紧密控制密切相关。尽管近年来对外源配体可用性的调控受到了相当多的关注,但对于负向调控哺乳动物组织中 Smad 活性的细胞内因子却知之甚少。通过基因敲除,我们发现 Smad4 抑制剂 ectodermin(Ecto,也称为 Trim33 或 Tif1gamma)在体内限制 Nodal 反应性是必需的。在胚胎和胚胎外组织中,这种修改后的 Smad 反应性景观会产生新的表型,这些表型与过度的 Nodal 活性有关。在外胚层内胚层中,Ecto 被要求将 Nodal 拮抗剂的表达局限于前内脏内胚层。在滋养层细胞中,Ecto 精确地控制 Nodal 活性,平衡干细胞自我更新和分化。滋养层特异性 Ecto 缺失将中胚层命运转向节点/组织者命运,揭示了 Smad 抑制对于沿着原始条纹精确分配细胞的要求。本研究揭示了 ectodermin/Tif1gamma 对 Smad 功能的细胞内负向调控是 TGFβ 信号在哺乳动物组织中细胞反应的关键因素。