Treier M, O'Connell S, Gleiberman A, Price J, Szeto D P, Burgess R, Chuang P T, McMahon A P, Rosenfeld M G
Howard Hughes Medical Institute, School and Department of Medicine, UCSD, CMMW, Room 345, La Jolla, CA 92093-0648, USA.
Development. 2001 Feb;128(3):377-86. doi: 10.1242/dev.128.3.377.
Pituitary gland development serves as an excellent model system in which to study the emergence of distinct cell types from a common primordium in mammalian organogenesis. We have investigated the role of the morphogen Sonic hedgehog (SHH) in outgrowth and differentiation of the pituitary gland using loss- and gain-of-function studies in transgenic mice. Shh is expressed throughout the ventral diencephalon and the oral ectoderm, but its expression is subsequently absent from the nascent Rathke's pouch as soon as it becomes morphologically visible, creating a Shh boundary within the oral epithelium. We used oral ectoderm/Rathke's pouch-specific 5' regulatory sequences (Pitx1(HS)) from the bicoid related pituitary homeobox gene (Pitx1) to target overexpression of the Hedgehog inhibitor Hip (Huntingtin interacting protein) to block Hedgehog signaling, finding that SHH is required for proliferation of the pituitary gland. In addition, we provide evidence that Hedgehog signaling, acting at the Shh boundary within the oral ectoderm, may exert a role in differentiation of ventral cell types (gonadotropes and thyrotropes) by inducing Bmp2 expression in Rathke's pouch, which subsequently regulates expression of ventral transcription factors, particularly Gata2. Furthermore, our data suggest that Hedgehog signaling, together with FGF8/10 signaling, synergizes to regulate expression of the LIM homeobox gene Lhx3, which has been proved to be essential for initial pituitary gland formation. Thus, SHH appears to exert effects on both proliferation and cell-type determination in pituitary gland development.
垂体发育是一个极佳的模型系统,可用于研究哺乳动物器官发生过程中从共同原基产生不同细胞类型的过程。我们利用转基因小鼠的功能丧失和功能获得研究,探究了形态发生素 Sonic hedgehog(SHH)在垂体生长和分化中的作用。Shh 在整个腹侧间脑和口腔外胚层中表达,但在形态上可见的新生拉特克囊一旦出现,其表达随即从该囊中消失,从而在口腔上皮内形成一个 Shh 边界。我们利用来自双尾相关垂体同源盒基因(Pitx1)的口腔外胚层/拉特克囊特异性 5'调控序列(Pitx1(HS)),靶向过表达刺猬蛋白抑制剂 Hip(亨廷顿相互作用蛋白)以阻断刺猬蛋白信号传导,发现 SHH 是垂体增殖所必需的。此外,我们提供证据表明,在口腔外胚层内的 Shh 边界起作用的刺猬蛋白信号传导,可能通过诱导拉特克囊中 Bmp2 的表达,在腹侧细胞类型(促性腺激素细胞和促甲状腺激素细胞)的分化中发挥作用,而 Bmp2 随后调节腹侧转录因子的表达,特别是 Gata2。此外,我们的数据表明,刺猬蛋白信号传导与 FGF8/10 信号传导协同作用,调节 LIM 同源盒基因 Lhx3 的表达,该基因已被证明对垂体的初始形成至关重要。因此,SHH 在垂体发育过程中似乎对增殖和细胞类型的确定都有影响。