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FASEB J ; 27(4): 1309-21, 2013 Apr.
Article in English | MEDLINE | ID: mdl-23233533

ABSTRACT

Embryo implantation requires extensive angiogenesis at the maternal-fetal interface. Hyperglycosylated human chorionic gonadotropin (hCG-H), a trophoblast invasive signal produced by extravillous cytotrophoblasts and by choriocarcinoma, was evaluated for its angiogenic role. hCG-H was purified by HPLC from choriocarcinoma supernatant, and the glycosylation pattern was determined by 2D gel analysis. Angiogenesis models used were aortic ring assay with wild-type and LHCGR-knockout mice, endothelial and mural cell proliferation, and migration assays. The TGF-ß signaling pathway was studied by coimmunoprecipitation, competitive binding, TGF-ß reporter gene assays, and Smad immunoblotting. hCG-H displayed a potent angiogenic effect [3.2-fold increase of number of vessel intersections in wild-type aortic rings (11.406 to 36.964)]. hCG-H-induced angiostimulation was independent of the classic hCG signaling pathway since it persisted in LHCGR-knockout mice [4.73-fold increase of number of vessel intersections (10.826 to 51.288)]. Using TGF-ß signaling inhibitors, Tß-RII was identified as the hCG-H receptor responsible for its angiogenic switch. hCG-H exposure enhanced phosphorylation of Smad 2 in endothelial and mural cells and genomic activation of Smad-responsive elements. Interaction between hCG-H and Tß-RII was demonstrated by coimmunoprecipitation and binding competition with (125)I-TGF-ß. This new paracrine interaction between trophoblast and endothelial cells through the hCG-H and the TGF-ß receptor complex plays a key role in angiogenesis associated with placental development and tumorigenesis.


Subject(s)
Chorionic Gonadotropin/metabolism , Endothelial Cells/metabolism , Neovascularization, Physiologic , Placenta/metabolism , Receptors, LH/metabolism , Receptors, Transforming Growth Factor beta/metabolism , Angiogenesis Inducing Agents/metabolism , Animals , Cells, Cultured , Embryo Implantation/physiology , Female , Glycosylation , Humans , Mice , Mice, Inbred C57BL , Pregnancy , Rats , Rats, Wistar , Signal Transduction/physiology , Trophoblasts/metabolism
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