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An EG-VEGF-dependent decrease in homeobox gene NKX3.1 contributes to cytotrophoblast dysfunction: a possible mechanism in human fetal growth restriction
- Source :
- Molecular Medicine, Molecular Medicine, Feinstein Institute for Medical Research, 2015, 21, pp.645-656. ⟨10.2119/molmed.2015.00071⟩, Molecular Medicine, Feinstein Institute for Medical Research, 2015, 21 (1), pp.645-656. ⟨10.2119/molmed.2015.00071⟩, Molecular Medicine, Feinstein Institute for Medical Research, 2015, 21, pp.645-656. 〈10.2119/molmed.2015.00071.〉, Molecular Medicine, 2015, 21, pp.645-656. ⟨10.2119/molmed.2015.00071⟩
- Publication Year :
- 2015
- Publisher :
- HAL CCSD, 2015.
-
Abstract
- International audience; Idiopathic fetal growth restriction (FGR) is frequently associated with placental insufficiency. Previous reports have provided evidence that endocrine gland-derived vascular endothelial growth factor (EG-VEGF), a placental secreted protein, is expressed during the first trimester of pregnancy, controls both trophoblast proliferation and invasion, and its increased expression is associated with human FGR. In this study, we hypothesize that EG-VEGF-dependent changes in placental homeobox gene expressions contribute to trophoblast dysfunction in idiopathic FGR. The changes in EG-VEGF-dependent homeobox gene expressions were determined using a homeobox gene cDNA array on placental explants of 8-12 wks gestation after stimulation with EG-VEGF in vitro for 24 h. The homeobox gene array identified a greater-than-five-fold increase in HOXA9, HOXC8, HOXC10, HOXD1, HOXD8, HOXD9 and HOXD11, while NKX 3.1 showed a greater-than-two-fold decrease in mRNA expression compared with untreated controls. Homeobox gene NKX3.1 was selected as a candidate because it is a downstream target of EG-VEGF and its expression and functional roles are largely unknown in control and idiopathic FGR-affected placentae. Real-time PCR and immunoblotting showed a significant decrease in NKX3.1 mRNA and protein levels, respectively, in placentae from FGR compared with control pregnancies. Gene inactivation in vitro using short-interference RNA specific for NKX3.1 demonstrated an increase in BeWo cell differentiation and a decrease in HTR-8/SVneo proliferation. We conclude that the decreased expression of homeobox gene NKX3.1 downstream of EG-VEGF may contribute to the trophoblast dysfunction associated with idiopathic FGR pregnancies.
- Subjects :
- MESH: Protein Structure, Quaternary
MESH: Cricetinae
Placental insufficiency
Biology
Cystic fibrosis
Andrology
MESH: Protein Structure, Tertiary
chemistry.chemical_compound
Syncytiotrophoblast
MESH: Protein Stability
[SDV.BBM.GTP]Life Sciences [q-bio]/Biochemistry, Molecular Biology/Genomics [q-bio.GN]
Genetics
medicine
Quaternary structure
MESH: Animals
CFTR
Membrane stability
[ SDV.MHEP.GEO ] Life Sciences [q-bio]/Human health and pathology/Gynecology and obstetrics
[ SDV.BBM ] Life Sciences [q-bio]/Biochemistry, Molecular Biology
NBD2
Molecular Biology
Gene
Genetics (clinical)
MESH: Cystic Fibrosis Transmembrane Conductance Regulator
Messenger RNA
MESH: Humans
Cytotrophoblast
[ SDV.BC ] Life Sciences [q-bio]/Cellular Biology
Trophoblast
[SDV.BDLR]Life Sciences [q-bio]/Reproductive Biology
Articles
medicine.disease
Molecular biology
MESH: Cell Line
Vascular endothelial growth factor
[ SDV.BDLR ] Life Sciences [q-bio]/Reproductive Biology
medicine.anatomical_structure
[SDV.BDD.EO]Life Sciences [q-bio]/Development Biology/Embryology and Organogenesis
chemistry
[ SDV.BDD.EO ] Life Sciences [q-bio]/Development Biology/Embryology and Organogenesis
embryonic structures
Molecular Medicine
Homeobox
Dimerization
[SDV.MHEP]Life Sciences [q-bio]/Human health and pathology
MESH: Cell Membrane
Subjects
Details
- Language :
- English
- ISSN :
- 10761551 and 15283658
- Database :
- OpenAIRE
- Journal :
- Molecular Medicine, Molecular Medicine, Feinstein Institute for Medical Research, 2015, 21, pp.645-656. ⟨10.2119/molmed.2015.00071⟩, Molecular Medicine, Feinstein Institute for Medical Research, 2015, 21 (1), pp.645-656. ⟨10.2119/molmed.2015.00071⟩, Molecular Medicine, Feinstein Institute for Medical Research, 2015, 21, pp.645-656. 〈10.2119/molmed.2015.00071.〉, Molecular Medicine, 2015, 21, pp.645-656. ⟨10.2119/molmed.2015.00071⟩
- Accession number :
- edsair.doi.dedup.....6f2857fce5d7266ad0f840e1e5d6bd1d