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MTA3 在滋养细胞中调节 CGB5 和 Snail 基因。

MTA3 regulates CGB5 and Snail genes in trophoblast.

机构信息

Department of Obstetrics, Gynecology & Reproductive Biology, Michigan State University, Grand Rapids, MI 49503, USA.

出版信息

Biochem Biophys Res Commun. 2013 Apr 19;433(4):379-84. doi: 10.1016/j.bbrc.2013.02.102. Epub 2013 Mar 17.

Abstract

Secreted by the placental trophoblast, human chorionic gonadotropin (hCG) is an important hormone during pregnancy and is required for the maintenance of pregnancy. Previous studies have shown that dys-regulation of hCG expression is associated with preeclampsia. However, the exact relationship between altered hCG levels and development of preeclampsia is unknown. Metastasis associated protein 3 (MTA3), a chromatin remodeling protein, is abundantly expressed in the placental trophoblasts, but its function is unknown. In breast cancer, MTA3 has been shown to repress the expression of Snail and cell migration. However, whether MTA3 acts similarly in the trophoblast has not been investigated. In the present study, we examined the role of MTA3 in regulating the hCG β-subunit gene (gene name: CGB5) and Snail expression in the trophoblast cell line, BeWo, as well as its relevance to the high hCG expression levels seen in preeclampsia. First, we investigated MTA3 expression in preeclamptic placenta as compared to normal control placenta via gene expression microarray and qRT-PCR and found that MTA3 was significantly down-regulated, whereas both CGB5 and Snail were up-regulated in preeclamptic placenta. Secondly, we knocked down MTA3 gene in trophoblast cell line BeWo and found Snail and hCG were both up-regulated, suggesting that MTA3 represses Snail and hCG gene expression in trophoblasts. Next, we cloned the CGB5 and Snail promoters into the pGL3-basic vector individually and found that silencing of MTA3 by siRNA resulted in an increase of both CGB5 and Snail promoter activities. To confirm that this MTA3 inhibition is a direct effect, we performed a chromatin immune-precipitation (ChIP) assay and found that MTA3 occupied the proximal promoter regions of both Snail and hCG within BeWo cells. Furthermore, we examined MTA3 expression in placental trophoblast by immunohistochemistry and found that MTA3 expression was higher in villous cytotrophoblasts versus syncytiotrophoblasts, which supports an inverse association of MTA3 with hCG expression. Lastly, using the well-characterized trophoblast fusion model, we examined MTA3 and hCG levels in forskolin-treated BeWo cells and found that MTA3 down-regulation was accompanied by an up-regulation of hCG. These data further suggest that MTA3 is repressing placental hCG expression. In summary, MTA3 plays a critical role in repressing hCG and Snail in placenta trophoblast and its deregulation is associated with preeclampsia.

摘要

由胎盘滋养层细胞分泌的人绒毛膜促性腺激素(hCG)是妊娠期间的重要激素,对于维持妊娠至关重要。先前的研究表明,hCG 表达失调与子痫前期有关。然而,改变的 hCG 水平与子痫前期发展的确切关系尚不清楚。转移相关蛋白 3(MTA3)是一种染色质重塑蛋白,在胎盘滋养层细胞中大量表达,但它的功能尚不清楚。在乳腺癌中,MTA3 已被证明可以抑制 Snail 和细胞迁移的表达。然而,MTA3 是否在滋养层中具有类似的作用尚未得到研究。在本研究中,我们研究了 MTA3 在调节胎盘滋养层细胞系 BeWo 中的 hCGβ-亚基基因(基因名称:CGB5)和 Snail 表达中的作用,以及其与子痫前期中所见的高 hCG 表达水平的相关性。首先,我们通过基因表达微阵列和 qRT-PCR 研究了子痫前期胎盘与正常对照胎盘之间的 MTA3 表达,发现 MTA3 显著下调,而 CGB5 和 Snail 均在上皮细胞中上调。然后,我们在胎盘滋养层细胞系 BeWo 中敲低了 MTA3 基因,发现 Snail 和 hCG 均上调,表明 MTA3 抑制了滋养层中的 Snail 和 hCG 基因表达。接下来,我们将 CGB5 和 Snail 启动子分别克隆到 pGL3-基本载体中,发现 siRNA 沉默 MTA3 导致 CGB5 和 Snail 启动子活性均增加。为了确认这种 MTA3 抑制是直接作用,我们进行了染色质免疫沉淀(ChIP)实验,发现 MTA3 在 BeWo 细胞中占据了 Snail 和 hCG 的近端启动子区域。此外,我们通过免疫组织化学法检查了胎盘滋养层中的 MTA3 表达,发现 MTA3 在绒毛细胞滋养层中的表达高于合体滋养层,这支持了 MTA3 与 hCG 表达的负相关。最后,使用经过充分表征的滋养层融合模型,我们检查了 forskolin 处理的 BeWo 细胞中的 MTA3 和 hCG 水平,发现 MTA3 下调伴随着 hCG 的上调。这些数据进一步表明 MTA3 抑制胎盘 hCG 表达。综上所述,MTA3 在胎盘滋养层中抑制 hCG 和 Snail 的表达中发挥着关键作用,其失调与子痫前期有关。

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