p45 NF-E2 regulates syncytiotrophoblast differentiation by post-translational GCM1 modifications in human intrauterine growth restriction

被引:19
作者
Kohli, Shrey [1 ,2 ]
Hoffmann, Juliane [1 ,2 ]
Lochmann, Franziska [1 ,2 ]
Markmeyer, Paulina [1 ,2 ]
Huebner, Hanna [3 ]
Fahlbusch, Fabian B. [4 ]
Al-Dabet, Moh'd Mohanad [1 ,2 ]
Gadi, Ihsan [1 ,2 ]
Manoharan, Jayakumar [1 ,2 ]
Loettge, Michael [5 ]
Zenclussen, Ana C. [6 ]
Aharon, Anat [7 ]
Brenner, Benjamin [7 ]
Shahzad, Khurrum [1 ,2 ,8 ]
Ruebner, Matthias [3 ]
Isermann, Berend [1 ,2 ]
机构
[1] Otto von Guericke Univ, Inst Clin Chem & Pathobiochem, Leipziger Str 44, D-39120 Magdeburg, Germany
[2] Otto von Guericke Univ, Hlth Campus Immunol Infectiol & Inflammat, Magdeburg, Germany
[3] Friedrich Alexander Univ Erlangen Nuremberg, Dept Gynecol & Obstet, Comprehens Canc Ctr Erlangen FMN, Erlangen, Germany
[4] Friedrich Alexander Univ Erlangen Nuremberg, Dept Pediat & Adolescent Med, Erlangen, Germany
[5] Klinikum Magdeburg, Gynecol & Obstet, Magdeburg, Germany
[6] Otto von Guericke Univ, Expt Obstet & Gynecol, Med Fac, Magdeburg, Germany
[7] Rambam Hlth Care Campus, Dept Hematol, Haifa, Israel
[8] Univ Sargodha, Dept Biotechnol, Sargodha, Pakistan
来源
CELL DEATH & DISEASE | 2017年 / 8卷
关键词
PLACENTAL CELL-FUSION; FETAL-GROWTH; TRANSCRIPTION FACTOR; SIGNALING CASCADE; SYNCYTIAL KNOTS; TROPHOBLAST; EXPRESSION; PREECLAMPSIA; RETARDATION; ACETYLATION;
D O I
10.1038/cddis.2017.127
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Placental insufficiency jeopardizes prenatal development, potentially leading to intrauterine growth restriction (IUGR) and stillbirth. Surviving fetuses are at an increased risk for chronic diseases later in life. IUGR is closely linked with altered trophoblast and placental differentiation. However, due to a paucity of mechanistic insights, suitable biomarkers and specific therapies for IUGR are lacking. The transcription factor p45 NF-E2 (nuclear factor erythroid derived 2) has been recently found to regulate trophoblast differentiation in mice. The absence of p45 NF-E2 in trophoblast cells causes IUGR and placental insufficiency in mice, but mechanistic insights are incomplete and the relevance of p45 NF-E2 for human syncytiotrophoblast differentiation remains unknown. Here we show that p45 NF-E2 negatively regulates human syncytiotrophoblast differentiation and is associated with IUGR in humans. Expression of p45 NF-E2 is reduced in human placentae complicated with IUGR compared with healthy controls. Reduced p45 NF-E2 expression is associated with increased syncytiotrophoblast differentiation, enhanced glial cells missing-1 (GCM1) acetylation and GCM1 desumoylation in IUGR placentae. Induction of syncytiotrophoblast differentiation in BeWo and primary villous trophoblast cells with 8-bromo-adenosine 3', 5'-cyclic monophosphate (8-Br-cAMP) reduces p45 NF-E2 expression. Of note, p45 NF-E2 knockdown is sufficient to increase syncytiotrophoblast differentiation and GCM1 expression. Loss of p45 NF-E2 using either approach resulted in CBP-mediated GCM1 acetylation and SENP-mediated GCM1 desumoylation, demonstrating that p45 NF-E2 regulates post-translational modifications of GCM1. Functionally, reduced p45 NF-E2 expression is associated with increased cell death and caspase-3 activation in vitro and in placental tissues samples. Overexpression of p45 NF-E2 is sufficient to repress GCM1 expression, acetylation and desumoylation, even in 8-Br-cAMP exposed BeWo cells. These results suggest that p45 NF-E2 negatively regulates differentiation and apoptosis activation of human syncytiotrophoblast by modulating GCM1 acetylation and sumoylation. These studies identify a new pathomechanism related to IUGR in humans and thus provide new impetus for future studies aiming to identify new biomarkers and/or therapies of IUGR.
引用
收藏
页码:e2730 / e2730
页数:12
相关论文
共 43 条
[1]   The NF-E2 transcription factor [J].
Andrews, NC .
INTERNATIONAL JOURNAL OF BIOCHEMISTRY & CELL BIOLOGY, 1998, 30 (04) :429-432
[2]   Glial cell missing-1 transcription factor is required for the differentiation of the human trophoblast [J].
Baczyk, D. ;
Drewlo, S. ;
Proctor, L. ;
Dunk, C. ;
Lye, S. ;
Kingdom, J. .
CELL DEATH AND DIFFERENTIATION, 2009, 16 (05) :719-727
[3]   Effects of Reduced Gcm1 Expression on Trophoblast Morphology, Fetoplacental Vascularity, and Pregnancy Outcomes in Mice [J].
Bainbridge, Shannon A. ;
Minhas, Abhijeet ;
Whiteley, Kathie J. ;
Qu, Dawei ;
Sled, John G. ;
Kingdom, John C. P. ;
Adamson, S. Lee .
HYPERTENSION, 2012, 59 (03) :732-U432
[4]   TYPE 2 (NON-INSULIN-DEPENDENT) DIABETES-MELLITUS, HYPERTENSION AND HYPERLIPEMIA (SYNDROME-X) - RELATION TO REDUCED FETAL GROWTH [J].
BARKER, DJP ;
HALES, CN ;
FALL, CHD ;
OSMOND, C ;
PHIPPS, K ;
CLARK, PMS .
DIABETOLOGIA, 1993, 36 (01) :62-67
[5]  
Baschat AA, 2010, J PERINAT MED, V38, P239, DOI [10.1515/JPM.2010.041, 10.1515/jpm.2010.041]
[6]   Decreased STAT3 in human idiopathic fetal growth restriction contributes to trophoblast dysfunction [J].
Borg, A. J. ;
Yong, H. E. J. ;
Lappas, M. ;
Degrelle, S. A. ;
Keogh, R. J. ;
Da Silva-Costa, F. ;
Fournier, T. ;
Abumaree, M. ;
Keelan, J. A. ;
Kalionis, B. ;
Murthi, P. .
REPRODUCTION, 2015, 149 (05) :523-532
[7]   SYNCYTIAL KNOTS, SPROUTS, APOPTOSIS, AND TROPHOBLAST DEPORTATION FROM THE HUMAN PLACENTA [J].
Burton, Graham J. ;
Jones, Carolyn J. P. .
TAIWANESE JOURNAL OF OBSTETRICS & GYNECOLOGY, 2009, 48 (01) :28-37
[8]   Involvement of Epac1/Rap1/CaMKI/HDAC5 signaling cascade in the regulation of placental cell fusion [J].
Chang, Ching-Wen ;
Cheong, Mei-Leng ;
Chang, Geen-Dong ;
Tsai, Ming-Song ;
Chen, Hungwen .
MOLECULAR HUMAN REPRODUCTION, 2013, 19 (11) :745-755
[9]   A Novel Cyclic AMP/Epac1/CaMKI Signaling Cascade Promotes GCM1 Desumoylation and Placental Cell Fusion [J].
Chang, Ching-Wen ;
Chang, Geen-Dong ;
Chen, Hungwen .
MOLECULAR AND CELLULAR BIOLOGY, 2011, 31 (18) :3820-3831
[10]   Stimulation of GCMa transcriptional activity by cyclic AMP/protein kinase a signaling is attributed to CBP-Mediated acetylation of GCMa [J].
Chang, CW ;
Chuang, HC ;
Yu, CC ;
Yao, TP ;
Chen, HW .
MOLECULAR AND CELLULAR BIOLOGY, 2005, 25 (19) :8401-8414