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条件性敲除 ERK1 和 ERK2 导致小鼠胎盘异常和分娩延迟。

Conditional loss of ERK1 and ERK2 results in abnormal placentation and delayed parturition in the mouse.

机构信息

Department Biomedical Science, College of Veterinary Medicine, Cornell University, Ithaca, NY, USA.

Department Veterinary Clinical Sciences, School of Veterinary Medicine, Louisiana State University, Baton Rouge, LA, USA.

出版信息

Sci Rep. 2019 Jul 3;9(1):9641. doi: 10.1038/s41598-019-45997-0.

Abstract

Extracellular-signal-regulated kinases (ERK) 1 and 2 regulate many aspects of the hypothalamic-pituitary-gonadal axis. We sought to understand the role of ERK1/2 signaling in cells expressing a Cre allele regulated by the endogenous GnRHR promoter (GRIC-ERKdko). Adult female GRIC-ERKdko mice were hypogonadotropic and anovulatory. Gonadotropin administration and mating led to pregnancy in one-third of the ERKdko females. Litters from ERKdko females and pup weights were reduced coincident with delayed parturition and 100% neonatal mortality. Based on this, we examined Cre expression in implantation sites as a potential mechanism. GnRHR mRNA levels at e10.5 and e12.5 were comparable to pituitary levels from adult female mice at proestrus and GnRHR mRNA in decidua was enriched compared to whole implantation site. In vivo studies confirmed recombination in decidua, and GRIC-ERKdko placentas showed reduced ERK2 expression. Histopathology revealed abnormalities in placental architecture in the GRIC-ERKdko animals. Regions of apoptosis at the decidual/uterine interface at e18.5 were observed in control animals but apoptotic tone in these regions was reduced in ERKdko animals. These studies support a potential model of ERK-dependent signaling within the implantation site leading to loss of placental architecture and mis-regulation of apoptotic events at parturition occurring coincident with prolonged gestation and neonatal mortality.

摘要

细胞外信号调节激酶(ERK)1 和 2 调节下丘脑-垂体-性腺轴的许多方面。我们试图了解 ERK1/2 信号在表达由内源性 GnRHR 启动子(GRIC-ERKdko)调节的 Cre 等位基因的细胞中的作用。成年雌性 GRIC-ERKdko 小鼠表现为促性腺激素不足和无排卵。促性腺激素给药和交配导致三分之一的 ERKdko 雌性怀孕。ERKdko 雌性的幼崽和幼崽体重减少与分娩延迟和 100%新生儿死亡率同时发生。基于此,我们检查了着床部位的 Cre 表达作为一种潜在的机制。e10.5 和 e12.5 的 GnRHR mRNA 水平与发情前期成年雌性小鼠的垂体水平相当,与整个着床部位相比,蜕膜中的 GnRHR mRNA 丰富。体内研究证实了蜕膜中的重组,GRIC-ERKdko 胎盘显示 ERK2 表达减少。组织病理学显示 GRIC-ERKdko 动物的胎盘结构异常。在对照动物中观察到 e18.5 时蜕膜/子宫界面的凋亡区域,但在 ERKdko 动物中这些区域的凋亡张力降低。这些研究支持 ERK 依赖性信号在着床部位的潜在模型,导致胎盘结构丧失和分娩时凋亡事件的失调,与妊娠延长和新生儿死亡率同时发生。

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