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FOXO1和FOXO3a的差异表达赋予子宫内膜蜕膜化过程中对氧化性细胞死亡的抗性。

Differential expression of FOXO1 and FOXO3a confers resistance to oxidative cell death upon endometrial decidualization.

作者信息

Kajihara Takeshi, Jones Marius, Fusi Luca, Takano Masashi, Feroze-Zaidi Fakhera, Pirianov Grisha, Mehmet Huseyin, Ishihara Osamu, Higham Jenny M, Lam Eric W-F, Brosens Jan J

机构信息

Institute of Reproductive and Developmental Biology, Imperial College London, Hammersmith Hospital, London W12 0NN, United Kingdom.

出版信息

Mol Endocrinol. 2006 Oct;20(10):2444-55. doi: 10.1210/me.2006-0118. Epub 2006 May 18.

Abstract

The integrity of the feto-maternal interface is critical for survival of the conceptus. This interface, consisting of the maternal decidua and the invading placental trophoblast, is exposed to profound changes in oxygen tension during pregnancy. We demonstrate that human endometrial stromal cells become extraordinarily resistant to oxidative stress-induced apoptosis upon decidualization in response to cAMP and progesterone signaling. This differentiation process is associated with the induction of the forkhead transcription factor FOXO1, which in turn increases the expression of the mitochondrial antioxidant manganese superoxide dismutase. However, silencing of FOXO1 did not increase the susceptibility of decidualized cells to oxidative cell death. Comparative analysis demonstrated that hydrogen peroxide, a source of free radicals, strongly induces FOXO3a mRNA and protein expression in undifferentiated human endometrial stromal cells but not in decidualized cells. Expression of a constitutively active FOXO3a mutant elicited apoptosis in decidualized cells. Furthermore, silencing of endogenous FOXO3a in undifferentiated cells abrogated apoptosis induced by hydrogen peroxide. These results suggest that the induction of FOXO1 may enhance the ability of decidualized cells to prevent oxidative damage while the simultaneous repression of FOXO3a expression disables the signaling pathway responsible for oxidative cell death. The differential regulation of FOXO expression provides the decidua with a robust system capable of coping with prolonged episodes of oxidative stress during pregnancy.

摘要

母胎界面的完整性对于胚胎的存活至关重要。这个界面由母体蜕膜和侵入的胎盘滋养层组成,在怀孕期间会受到氧张力的深刻变化影响。我们证明,人类子宫内膜基质细胞在响应cAMP和孕酮信号而发生蜕膜化后,对氧化应激诱导的细胞凋亡具有极强的抵抗力。这种分化过程与叉头转录因子FOXO1的诱导有关,而FOXO1反过来又会增加线粒体抗氧化剂锰超氧化物歧化酶的表达。然而,沉默FOXO1并没有增加蜕膜化细胞对氧化细胞死亡的易感性。比较分析表明,自由基来源的过氧化氢强烈诱导未分化的人类子宫内膜基质细胞中FOXO3a mRNA和蛋白质的表达,但在蜕膜化细胞中则不然。组成型活性FOXO3a突变体的表达在蜕膜化细胞中引发细胞凋亡。此外,沉默未分化细胞中的内源性FOXO3a可消除过氧化氢诱导的细胞凋亡。这些结果表明,FOXO1的诱导可能增强蜕膜化细胞预防氧化损伤的能力,而同时抑制FOXO3a的表达则会使负责氧化细胞死亡的信号通路失活。FOXO表达的差异调节为蜕膜提供了一个强大的系统,能够应对怀孕期间长时间的氧化应激。

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