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Regulation of Akt expression and phosphorylation by 17β-estradiol in the rat uterus during estrous cycle

机译:发情周期中大鼠子宫中17β-雌二醇对Akt表达和磷酸化的调节

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摘要

Molecular and intra-cellular mechanisms involved in the regulation of apoptosis processes in endometrial cells are poorly understood and documented. We have investigated the possibility that Akt survival pathway might be involved in the regulation of apoptosis in the uterus during the estrous cycle. Rats with regular estrous cycle (4 days) were killed at different days of estrous cycle (diestrus, proestrus, estrus and metestrus). Uteri were collected and fixed for immunohistochemical staining (IHC) and apoptotic cell death detection by [TdT]-mediated deoxyuridinetriphosphate nick end-labelling (TUNEL) or endometrial protein extracts collected for Western analysis. TUNEL analysis revealed that apoptosis was mainly found at estrus compared to other day of estrous cycle. TUNEL positive cells were apparent in luminal epithelial cells only. No apoptotic cells were observed at proestrus. In contrast, proliferation was maximal at proestrus as confirmed with the expression of CDC47/MCM7 (a cell proliferation marker). Intact form of caspase-3 was maximal at proestrus and was reduced only at estrus. Likewise, presence of a specific cleaved caspase-3 fragment was observed only at estrus and IHC revealed that cleaved caspase-3 signal was found in luminal epithelial cells. PTEN protein, a phosphatase involved in the regulation of Akt phosphorylation, was present at all days of estrous cycle and showed no significant regulation in relation to cycle. Expression of phospho-Akt (the activated form of Akt) was present at metestrus, diestrus, and proestrus but decreased significantly at estrus. Akt protein expression was maximal at estrus. IHC revealed that Akt expression was high in both stromal and epithelial cells at estrus. Further studies using ovariectomized rats demonstrated that 17β-estradiol increased endometrial cell proliferation which was accompanied by an increase of both Akt expression and phosphorylation. These results suggest that increased Akt expression and activity in response to estradiol may be an important mechanism to protect endometrial cells from apoptotic triggering and to induce endometrial cell proliferation, whereas inhibition of Akt activity leads to caspase-3 activation and apoptosis in endometrial cells.
机译:涉及子宫内膜细胞凋亡过程调控的分子和细胞内机制知之甚少。我们研究了在发情周期中Akt生存途径可能参与子宫细胞凋亡调控的可能性。在发情周期的不同天数(发情期,发情期,发情期和发情期)处死有规律发情周期(4天)的大鼠。收集子宫并固定以进行免疫组织化学染色(IHC),并通过[TdT]介导的脱氧尿苷三磷酸缺口末端标记(TUNEL)或子宫内膜蛋白提取物检测凋亡细胞死亡,以进行Western分析。 TUNEL分析显示,与发情周期的另一天相比,凋亡主要在发情期发现。 TUNEL阳性细胞仅在腔上皮细胞中可见。在发情期未观察到凋亡细胞。相反,如CDC47 / MCM7(细胞增殖标志物)的表达所证实,增殖在发情期达到最大。 Caspase-3的完整形式在发情期最大,仅在发情期才减少。同样,仅在发情期观察到特定的裂解的caspase-3片段的存在,IHC发现在腔上皮细胞中发现了裂解的caspase-3信号。 PTEN蛋白是一种参与Akt磷酸化调节的磷酸酶,在动情周期的所有天都存在,并且与周期没有明显的关系。磷酸-Akt(Akt的活化形式)的表达存在于睾丸,二头肌和发情期,但在发情期却明显下降。在发情期,Akt蛋白表达最大。 IHC显示发情时基质细胞和上皮细胞中的Akt表达都很高。使用去卵巢大鼠的进一步研究表明17β-雌二醇增加了子宫内膜细胞的增殖,并伴随着Akt表达和磷酸化的增加。这些结果表明,响应雌二醇的Akt表达和活性增加可能是保护子宫内膜细胞免于凋亡触发并诱导子宫内膜细胞增殖的重要机制,而抑制Akt活性导致caspase-3激活和子宫内膜细胞凋亡。

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