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Decidual PTEN expression is required for trophoblast invasion in the mouse

机译:蜕膜PTEN表达是小鼠滋养细胞入侵所必需的

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摘要

Trophoblast invasion likely depends on complex cross talk between the fetal and maternal tissues and may involve the modulation of phosphatidylinositol 3-kinase (PI3K)/AKT signaling activity in maternal decidual cells. In this report, we studied implantation in Ptentm1Hwu/tm1Hwu;Amhr2tm3(cre)Bhr/+ mice, which lack the PI3K signaling antagonist gene Pten in myometrial and stromal/decidual cells. Primiparous Ptentm1Hwu/tm1Hwu;Amhr2tm3(cre)Bhr/+ mice were found to be subfertile because of increased fetal mortality at e11.5. Histopathological analyses revealed a failure of decidual regression in these mice, accompanied by reduced or absent invasion of fetal trophoblast glycogen cells and giant cells, abnormal development of the placental labyrinth, and frequent apparent intrauterine fetal growth restriction. Unexpectedly, the loss of phosphate and tensin homolog deleted on chromosome 10 (PTEN) expression in Ptentm1Hwu/tm1Hwu;Amhr2tm3(cre)Bhr/+ decidual cells was not accompanied by a detectable increase in AKT phosphorylation or altered expression or activation of PI3K/AKT downstream effectors such as mammalian target of rapamycin or glycogen synthase kinase-3β. Terminal deoxynucleotidyl transferase-mediated nick end labeling and bromodeoxyuridine incorporation analyses attributed to the lack of decidual regression mainly to decreased apoptosis in Ptentm1Hwu/tm1Hwu;Amhr2tm3(cre)Bhr/+ decidual cells, rather than to increased proliferation. Remodeling of the maternal vasculature was delayed in Ptentm1Hwu/tm1Hwu;Amhr2tm3(cre)Bhr/+ uteri at e11.5, as evidenced by persistence of vascular smooth muscle and decreased infiltration of uterine natural killer cells. In addition, thickening of the myometrium and disorganization of the muscle fibers were observed before and throughout gestation. Almost all Ptentm1Hwu/tm1Hwu;Amhr2tm3(cre)Bhr/+ mice failed to carry a second litter to term, apparently attributable to endometrial hyperplasia and uterine infections. Together, these data demonstrate novel roles of PTEN in the mammalian uterus and its requirement for proper trophoblast invasion and decidual regression.
机译:滋养层细胞的侵袭可能取决于胎儿和母体组织之间的复杂串扰,并且可能涉及母体蜕膜细胞中磷脂酰肌醇3激酶(PI3K)/ AKT信号传导活性的调节。在本报告中,我们研究了在子宫肌层和间质/间质中缺乏PI3K信号拮抗剂基因Pten的Pten tm1Hwu / tm1Hwu ; Amhr2 tm3(cre)Bhr / + 小鼠的植入蜕膜细胞。发现原始的Pten tm1Hwu / tm1Hwu ; Amhr2 tm3(cre)Bhr / + 小鼠由于在e11.5处的胎儿死亡率增加而不能繁殖。组织病理学分析显示,这些小鼠的蜕膜功能衰竭失败,伴随着胎儿滋养层糖原细胞和巨细胞侵袭的减少或缺失,胎盘迷宫的异常发育以及频繁的明显宫内胎儿生长受限。出乎意料的是,Pten tm1Hwu / tm1Hwu ; Amhr2 tm3(cre)Bhr / + 蜕膜细胞的10号染色体(PTEN)表达缺失的磷酸化和张力蛋白同源物缺失通过可检测到的AKT磷酸化增加,PI3K / AKT下游效应子(例如雷帕霉素或糖原合酶激酶-3β的哺乳动物靶标)表达或激活的改变来实现。末端脱氧核苷酸转移酶介导的切口末端标记和溴脱氧尿苷掺入分析归因于缺乏蜕膜退化,主要是由于Pten tm1Hwu / tm1Hwu ; Amhr2 tm3(cre)Bhr / + 蜕膜细胞,而不是增加增殖。 Pten tm1Hwu / tm1Hwu ; Amhr2 tm3(cre)Bhr / + 子宫的母体血管重建在e11.5处被延迟,血管平滑肌和子宫自然杀伤细胞浸润减少。另外,在妊娠之前和整个妊娠期间观察到子宫肌层增厚和肌纤维紊乱。几乎所有的Pten tm1Hwu / tm1Hwu ; Amhr2 tm3(cre)Bhr / + 小鼠都无法再产下一胎,这显然是由于子宫内膜增生和子宫感染所致。总之,这些数据证明了PTEN在哺乳动物子宫中的新作用及其对滋养细胞正常侵袭和蜕膜退化的要求。

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