Guimarães-Young Amy, Neff Traci, Dupuy Adam J, Goodheart Michael J
Department of Anatomy and Cell Biology, Roy J. and Lucille A. Carver College of Medicine, University of Iowa, Iowa City, IA 52242, USA.
Department of Obstetrics and Gynecology, University of Iowa Hospitals and Clinics, Iowa City, IA 52242, USA.
Dev Biol. 2016 Jun 15;414(2):219-27. doi: 10.1016/j.ydbio.2016.04.010. Epub 2016 Apr 19.
The importance of canonical Wnt signaling to murine uterine development is well established. Mouse models in which uterine-specific Wnt ligands, β-catenin, or Lef1 are disrupted result in failure of postnatal endometrial gland development. Sox17 is a transcription factor characterized in numerous tissues as an antagonist of Wnt signaling. Thus, we hypothesized that conditional ablation of Sox17 would lead to hyperproliferation of endometrial glands in mice. Contrary to our prediction, disruption of Sox17 in epithelial and stromal compartments led to inhibition of endometrial adenogenesis and a loss of reproductive capacity. Epithelium-specific Sox17 disruption resulted in normal adenogenesis although reproductive capacity remained impaired. These findings suggest that non-epithelial, Sox17-positive cells are necessary for adenogenesis and that glands require Sox17 to properly function. To our knowledge, these findings are the first to implicate Sox17 in endometrial gland formation and reproductive success. The data presented herein underscore the importance of studying Sox17 in uterine homeostasis and function.
经典Wnt信号通路对小鼠子宫发育的重要性已得到充分证实。子宫特异性Wnt配体、β-连环蛋白或Lef1被破坏的小鼠模型会导致出生后子宫内膜腺体发育失败。Sox17是一种转录因子,在许多组织中被表征为Wnt信号通路的拮抗剂。因此,我们假设条件性敲除Sox17会导致小鼠子宫内膜腺体过度增殖。与我们的预测相反,上皮和基质区室中Sox17的破坏导致子宫内膜腺生成受到抑制和生殖能力丧失。上皮特异性Sox17破坏导致正常的腺生成,尽管生殖能力仍然受损。这些发现表明,非上皮性、Sox17阳性细胞是腺生成所必需的,并且腺体需要Sox17才能正常发挥功能。据我们所知,这些发现首次表明Sox17与子宫内膜腺体形成和生殖成功有关。本文提供的数据强调了研究Sox17在子宫内稳态和功能中的重要性。