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首页> 外文期刊>Molecular and Cellular Biology >Lack of CCAAT Enhancer Binding Protein Beta (C/EBPβ) in Uterine Epithelial Cells Impairs Estrogen-Induced DNA Replication, Induces DNA Damage Response Pathways, and Promotes Apoptosis
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Lack of CCAAT Enhancer Binding Protein Beta (C/EBPβ) in Uterine Epithelial Cells Impairs Estrogen-Induced DNA Replication, Induces DNA Damage Response Pathways, and Promotes Apoptosis

机译:子宫上皮细胞缺乏CCAAT增强子结合蛋白Beta(C /EBPβ)损害雌激素诱导的DNA复制,诱导DNA损伤反应途径并促进细胞凋亡。

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Female mice lacking the transcription factor C/EBPβ are infertile and display markedly reduced estrogen (E)-induced proliferation of the uterine epithelial lining during the reproductive cycle. The present study showed that E-stimulated luminal epithelial cells of a C/EBPβ-null uterus are able to proceed through the G1 phase of the cell cycle before getting arrested in the S phase. This cell cycle arrest was accompanied by markedly reduced levels of expression of E2F3, an E2F family member, and a lack of nuclear localization of cyclin E, a critical regulator of cdk2. An increased nuclear accumulation of p27, an inhibitor of the cyclin E-cdk2 complex, was also observed for the mutant epithelium. Gene expression profiling of C/EBPβ-null uterine epithelial cells revealed that the blockade of E-induced DNA replication triggers the activation of several well-known components of the DNA damage response pathway, such as ATM, ATR, histone H2AX, checkpoint kinase 1, and tumor suppressor p53. The activation of p53 by ATM/ATR kinase led to increased levels of expression of p21, an inhibitor of G1-S-phase progression, which helps maintain cell cycle arrest. Additionally, p53-dependent mechanisms contributed to an increased apoptosis of replication-defective cells in the C/EBPβ-null epithelium. C/EBPβ, therefore, is an essential mediator of E-induced growth and survival of uterine epithelial cells of cycling mice.
机译:缺乏转录因子C /EBPβ的雌性小鼠不育,并且在生殖周期中显示雌激素(E)引起的子宫上皮内膜增殖明显减少。本研究表明,C /EBPβ-无效子宫的经E刺激的腔上皮细胞能够在进入S期之前先经历细胞周期的G 1 期。这种细胞周期停滞伴随着E2F3(一个E2F家族成员)的表达水平显着降低,并且缺乏细胞周期蛋白E(cdk2的关键调控因子)的核定位。还观察到突变上皮细胞p27(细胞周期蛋白E-cdk2复合物的抑制剂)的核积累增加。 C /EBPβ无效的子宫上皮细胞的基因表达谱表明,E诱导的DNA复制的阻滞触发了DNA损伤应答途径的几个众所周知的成分的激活,例如ATM,ATR,组蛋白H2AX,检查点激酶1和肿瘤抑制因子p53。 ATM / ATR激酶激活p53导致p21(G 1 -S期进程的抑制剂)表达水平升高,有助于维持细胞周期停滞。此外,p53依赖性机制导致C /EBPβ-null上皮细胞中复制缺陷细胞的凋亡增加。因此,C /EBPβ是E诱导周期小鼠子宫上皮细胞生长和存活的重要介质。

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