Osmundsen Allison M, Keisler Jessica L, Taketo M Mark, Davis Shannon W
Department of Biological Sciences, University of South Carolina, Columbia, South Carolina 29208.
Division of Experimental Therapeutics, Graduate School of Medicine, Kyoto University, Yoshida-Konoe-cho, Sakyo, Kyoto 606-8501, Japan.
Endocrinology. 2017 Oct 1;158(10):3339-3353. doi: 10.1210/en.2017-00581.
The pituitary organizer is a domain within the ventral diencephalon that expresses Bmp4, Fgf8, and Fgf10, which induce the formation of the pituitary precursor, Rathke's pouch, from the oral ectoderm. The WNT signaling pathway regulates this pituitary organizer such that loss of Wnt5a leads to an expansion of the pituitary organizer and an enlargement of Rathke's pouch. WNT signaling is classified into canonical signaling, which is mediated by β-CATENIN, and noncanonical signaling, which operates independently of β-CATENIN. WNT5A is typically classified as a noncanonical WNT; however, other WNT family members are expressed in the ventral diencephalon and nuclear localized β-CATENIN is observed in the ventral diencephalon. Therefore, we sought to determine whether canonical WNT signaling is necessary for regulation of pituitary organizer function. Using a conditional loss-of-function approach, we deleted β-catenin within the mouse ventral diencephalon. Mutant embryos have a smaller Rathke's pouch, resulting from a reduced pituitary organizer, especially Fgf8. This result suggests that canonical WNT signaling promotes pituitary organizer function, instead of inhibiting it. To test this hypothesis, we stimulated canonical WNT signaling in the ventral diencephalon using an inducible gain-of-function allele of β-catenin and found that stimulating canonical WNT signaling expands the domain of Fgf8 and results in a dysmorphic Rathke's pouch. These results demonstrate that canonical WNT signaling in the ventral diencephalon is necessary for proper expression of pituitary organizer genes and suggests that a balance of both canonical and noncanonical WNT signaling is necessary to ensure proper formation of Rathke's pouch.
垂体组织者是腹侧间脑内的一个区域,它表达Bmp4、Fgf8和Fgf10,这些因子诱导口腔外胚层形成垂体前体拉特克囊。WNT信号通路调节这个垂体组织者,使得Wnt5a缺失会导致垂体组织者扩张以及拉特克囊增大。WNT信号分为由β-连环蛋白介导的经典信号和独立于β-连环蛋白发挥作用的非经典信号。WNT5A通常被归类为非经典WNT;然而,其他WNT家族成员也在腹侧间脑表达,并且在腹侧间脑观察到核定位的β-连环蛋白。因此,我们试图确定经典WNT信号对于调节垂体组织者功能是否必要。我们采用条件性功能缺失方法,在小鼠腹侧间脑内删除β-连环蛋白。突变胚胎的拉特克囊较小,这是由于垂体组织者减小,尤其是Fgf8减少所致。这一结果表明经典WNT信号促进垂体组织者功能,而非抑制它。为了验证这一假设,我们使用β-连环蛋白的诱导性功能获得等位基因刺激腹侧间脑内的经典WNT信号,发现刺激经典WNT信号会扩大Fgf8的区域并导致拉特克囊畸形。这些结果表明腹侧间脑内的经典WNT信号对于垂体组织者基因的正常表达是必要的,并且提示经典和非经典WNT信号的平衡对于确保拉特克囊的正常形成是必要的。