Chang Hye Jin, Shin Hee Sung, Kim Tae Hoon, Yoo Jung-Yoon, Teasley Hanna E, Zhao Jean J, Ha Un-Hwan, Jeong Jae-Wook
Department of Obstetrics, Gynecology and Reproductive Biology, Michigan State University, Grand Rapids, MI, United States of America.
Health Promotion Center, Seoul National University Bundang Hospital, Seongnam, Republic of Korea.
PLoS One. 2018 Jan 18;13(1):e0191433. doi: 10.1371/journal.pone.0191433. eCollection 2018.
The PI3K/AKT signaling pathway plays a critical role in the maintenance of equilibrium between cell survival and apoptosis. The Pik3ca gene is mutated in a range of human cancers. It has been found to be oncogenic, and mutations lead to constitutive activation of the PI3K/AKT pathway. The expression patterns of PIK3CA proteins in the uterus of mice during early pregnancy indicate that it may play a role in the regulation of glandular epithelial cells, which is required to support uterine receptivity. To further investigate the role of Pik3ca in uterine function, Pik3ca was conditionally ablated only in the PGR-positive cells (Pgrcre/+Pik3caf/f; Pik3cad/d). A defect of uterine gland development and decidualization led to subfertility observed in Pik3cad/d mice. Pik3cad/d mice showed significantly decreased uterine weight compared to Pik3caf/f mice. Interestingly, a significant decrease of gland numbers were detected in Pik3cad/d mice compared to control mice. In addition, we found a decrease of Foxa2 expression, which is a known uterine gland marker in Pik3cad/d mice. Furthermore, the excessive proliferation of endometrial epithelial cells was observed in Pik3cad/d mice. Our studies suggest that Pik3ca has a critical role in uterine gland development and female fertility.
PI3K/AKT信号通路在维持细胞存活与凋亡之间的平衡中起关键作用。Pik3ca基因在一系列人类癌症中发生突变。已发现它具有致癌性,其突变会导致PI3K/AKT通路的组成性激活。妊娠早期小鼠子宫中PIK3CA蛋白的表达模式表明,它可能在腺上皮细胞的调节中发挥作用,而腺上皮细胞对于支持子宫容受性是必需的。为了进一步研究Pik3ca在子宫功能中的作用,仅在孕激素受体(PGR)阳性细胞中对Pik3ca进行条件性敲除(Pgrcre/+Pik3caf/f;Pik3cad/d)。在Pik3cad/d小鼠中观察到子宫腺发育和蜕膜化缺陷导致生育力下降。与Pik3caf/f小鼠相比,Pik3cad/d小鼠的子宫重量显著降低。有趣的是,与对照小鼠相比,在Pik3cad/d小鼠中检测到腺数量显著减少。此外,我们发现在Pik3cad/d小鼠中,作为已知子宫腺标志物的Foxa2表达降低。此外,在Pik3cad/d小鼠中观察到子宫内膜上皮细胞过度增殖。我们的研究表明,Pik3ca在子宫腺发育和雌性生育力中起关键作用。