Department of Physiology, Southern Illinois University, Carbondale, Illinois, USA.
PLoS One. 2012;7(12):e52156. doi: 10.1371/journal.pone.0052156. Epub 2012 Dec 19.
The pituitary gland regulates numerous physiological functions including growth, reproduction, temperature and metabolic homeostasis, lactation, and response to stress. Pituitary organogenesis is dependent on signaling factors that are produced in and around the developing pituitary. The studies described in this report reveal that the forkhead transcription factor, Foxd1, is not expressed in the developing mouse pituitary gland, but rather in the mesenchyme surrounding the pituitary gland, which is an essential source of signaling factors that regulate pituitary organogenesis. Loss of Foxd1 causes a morphological defect in which the anterior lobe of the pituitary gland protrudes through the cartilage plate that is developing ventral to the pituitary at embryonic days (e)14.5, e16.5, and e18.5. The number of proliferating pituitary cells is increased at e14.5 and e16.5. Loss of Foxd1 also results in significantly decreased levels of Lhb expression at e18.5. This decrease in Lhb expression does not appear to be due to a change in the number of gonadotrope cells in the pituitary gland. Previous studies have shown that loss of the LIM homeodomain factor, Lhx3, which is activated by the FGF signaling pathway, results in loss of LH production. Although there is a difference in Lhb expression in Foxd1 null mice, the expression pattern of LHX3 is not altered in Foxd1 null mice. These studies suggest that Foxd1 is indirectly required for normal Lhb expression and cartilage formation.
垂体调节着许多生理功能,包括生长、生殖、体温和代谢稳态、泌乳以及对压力的反应。垂体器官发生依赖于在发育中的垂体中产生的信号因子。本报告中描述的研究表明,叉头转录因子 Foxd1 不在发育中的小鼠垂体中表达,而是在围绕垂体的间质中表达,这是调节垂体器官发生的信号因子的重要来源。Foxd1 的缺失导致垂体前叶通过在 e14.5、e16.5 和 e18.5 时发育的位于垂体下方的软骨板突出的形态缺陷。e14.5 和 e16.5 时增殖的垂体细胞数量增加。Foxd1 的缺失还导致 e18.5 时 Lhb 表达水平显著降低。这种 Lhb 表达的降低似乎不是由于垂体中促性腺激素细胞数量的变化。先前的研究表明,激活 FGF 信号通路的 LIM 同源域因子 Lhx3 的缺失导致 LH 产生的丧失。尽管 Foxd1 缺失小鼠中的 Lhb 表达存在差异,但 Foxd1 缺失小鼠中的 LHX3 表达模式没有改变。这些研究表明,Foxd1 间接需要正常的 Lhb 表达和软骨形成。