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首页> 外文期刊>Reproduction: The official journal of the Society for the Study of Fertility >NME1 at the human maternal–fetal interface downregulates titin expression and invasiveness of trophoblast cells via MAPK pathway in early pregnancy
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NME1 at the human maternal–fetal interface downregulates titin expression and invasiveness of trophoblast cells via MAPK pathway in early pregnancy

机译:人母-胎儿界面上的NME1在妊娠早期通过MAPK途径下调了肌钙蛋白的表达和滋养细胞的侵袭性

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摘要

Nometastatic gene 23-H1 ( NME1 , also known as nm23-H1) is a wide-spectrum tumor metastasis suppressor gene that plays an important role in suppressing the invasion and metastasis of tumor cells. It has been demonstrated that NME1 is also expressed in human first-trimester placenta, but its function at maternal–fetal interface is not clear. The present study aimed to elucidate the biological function of NME1 at the maternal–fetal interface, especially on invasion of the human extravillous cytotrophoblasts (EVCTs). NME1 has been identified in both human trophoblast cells and decidual stromal cells (DSCs) in early pregnancy. We have proved that NME1 silencing in vitro increases the titin protein translation in the invasive EVCTs. Moreover, NME1 can inactivate the phospho-extracellular signal-regulated kinase 1/2 (P-ERK1/2) in trophoblasts in a time-dependent manner, and U0126, an inhibitor of MAPK/ERK, can inhibit partly the enhanced invasiveness and titin expression in trophoblasts induced by NME1 silencing. Interestingly, the expression of NME1 in either villi or decidua is higher significantly in miscarriage than that of the normal early pregnancy. These findings first reveal that the NME1 expressed in trophoblasts and DSCs controls the inappropriate invasion of human first-trimester trophoblast cells via MAPK/ERK1/2 signal pathway, and the overexpression of NME1 at maternal–fetal interface leads to pregnancy wastage.
机译:止转移基因23-H1(NME1,也称为nm23-H1)是一种广谱肿瘤转移抑制基因,在抑制肿瘤细胞的侵袭和转移中起着重要作用。已经证明NME1在人的早孕胎盘中也有表达,但其在母胎界面的功能尚不清楚。本研究旨在阐明NME1在母胎界面上的生物学功能,特别是对人类绒毛外滋养细胞(EVCT)的侵袭。 NME1已在妊娠早期的人类滋养层细胞和蜕膜基质细胞(DSC)中被发现。我们已经证明,在体外NME1沉默可增加侵入性EVCT中的titin蛋白翻译。此外,NME1可以以时间依赖性的方式使滋养细胞中的磷酸化细胞外信号调节激酶1/2(P-ERK1 / 2)失活,而MAPK / ERK的抑制剂U0126则可以部分抑制侵袭力和滴定度的提高。 NME1沉默诱导的滋养细胞表达有趣的是,流产中的NME1在绒毛或蜕膜中的表达明显高于正常早孕。这些发现首先表明,在滋养细胞和DSC中表达的NME1通过MAPK / ERK1 / 2信号通路控制了人类早孕滋养细胞的不当入侵,并且母胎界面NME1的过表达导致了孕妇的浪费。

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