Department of Internal Medicine I and Clinical Chemistry, University of Heidelberg, INF 410, 69120 Heidelberg, Germany.
J Biol Chem. 2012 Feb 17;287(8):5400-11. doi: 10.1074/jbc.M111.289801. Epub 2011 Dec 15.
We recently demonstrated that the bZip transcription factor nuclear factor erythroid-derived 2 (Nfe2) represses protein acetylation and expression of the transcription factor glial cell missing 1 (Gcm1) in trophoblast cells, preventing excess syncytiotrophoblast formation and permitting normal placental vascularization and embryonic growth. However, the Gcm1 promoter lacks a Nfe2-binding site and hence the mechanisms linking Nfe2 and Gcm1 expression remained unknown. Here we show that Nfe2 represses JunD DNA-binding activity to the Gcm1 promoter during syncytiotrophoblast differentiation. Interventional studies using knockdown and knockin approaches show that enhanced JunD DNA-binding activity is required for increased expression of Gcm1 and syncytiotrophoblast formation as well as impaired placental vascularization and reduced growth of Nfe2(-/-) embryos. Induction of Gcm1 expression requires binding of JunD to the -1441 site within the Gcm1 promoter, which is distinct from the -1314 site previously shown to induce Gcm1 expression by other bZip transcription factors. Nfe2 modulates JunD binding to the Gcm1 promoter via acetylation, as reducing JunD acetylation using the histone acetyltransferase inhibitor curcumin reverses the increased JunD DNA-binding activity observed in the absence of Nfe2. This identifies a novel mechanism through which bZip transcription factors interact. Within the placenta this interaction regulates Gcm1 expression, syncytiotrophoblast formation, placental vascularization, and embryonic growth.
我们最近的研究表明,bZip 转录因子核因子红细胞衍生 2(Nfe2)抑制蛋白乙酰化和转录因子胶质细胞缺失 1(Gcm1)在滋养细胞中的表达,防止过度合胞滋养层形成,并允许正常胎盘血管化和胚胎生长。然而,Gcm1 启动子缺乏 Nfe2 结合位点,因此,连接 Nfe2 和 Gcm1 表达的机制仍然未知。在这里,我们表明 Nfe2 在合胞滋养层分化过程中抑制 JunD 对 Gcm1 启动子的 DNA 结合活性。使用敲低和敲入方法的干预研究表明,增强的 JunD DNA 结合活性是增加 Gcm1 表达和合胞滋养层形成以及胎盘血管化受损和 Nfe2(-/-)胚胎生长减少所必需的。Gcm1 表达的诱导需要 JunD 结合到 Gcm1 启动子的-1441 位点,这与先前显示其他 bZip 转录因子通过-1314 位点诱导 Gcm1 表达的位点不同。Nfe2 通过乙酰化调节 JunD 与 Gcm1 启动子的结合,因为使用组蛋白乙酰转移酶抑制剂姜黄素降低 JunD 乙酰化会逆转在缺乏 Nfe2 时观察到的 JunD DNA 结合活性增加。这确定了 bZip 转录因子相互作用的一种新机制。在胎盘内,这种相互作用调节 Gcm1 表达、合胞滋养层形成、胎盘血管化和胚胎生长。