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The TGF-β/UCHL5/Smad2 Axis Contributes to the Pathogenesis of Placenta Accreta

Placenta accreta is a high-risk condition causing obstetric crisis and hemorrhage; however, its pathogenesis remains unknown. We aimed to identify the factors contributing to trophoblast invasiveness and angiogenic potential, which in turn drive the pathogenesis of placenta accreta. We focused on th...

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Autores principales: Hashimoto, Kei, Miyagawa, Yuko, Watanabe, Saya, Takasaki, Kazuki, Nishizawa, Miki, Yatsuki, Keita, Takahashi, Yuko, Kamata, Hideo, Kihira, Chikara, Hiraike, Haruko, Sasamori, Yukifumi, Kido, Koichiro, Ryo, Eiji, Nagasaka, Kazunori
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10530686/
https://www.ncbi.nlm.nih.gov/pubmed/37762005
http://dx.doi.org/10.3390/ijms241813706
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author Hashimoto, Kei
Miyagawa, Yuko
Watanabe, Saya
Takasaki, Kazuki
Nishizawa, Miki
Yatsuki, Keita
Takahashi, Yuko
Kamata, Hideo
Kihira, Chikara
Hiraike, Haruko
Sasamori, Yukifumi
Kido, Koichiro
Ryo, Eiji
Nagasaka, Kazunori
author_facet Hashimoto, Kei
Miyagawa, Yuko
Watanabe, Saya
Takasaki, Kazuki
Nishizawa, Miki
Yatsuki, Keita
Takahashi, Yuko
Kamata, Hideo
Kihira, Chikara
Hiraike, Haruko
Sasamori, Yukifumi
Kido, Koichiro
Ryo, Eiji
Nagasaka, Kazunori
author_sort Hashimoto, Kei
collection PubMed
description Placenta accreta is a high-risk condition causing obstetric crisis and hemorrhage; however, its pathogenesis remains unknown. We aimed to identify the factors contributing to trophoblast invasiveness and angiogenic potential, which in turn drive the pathogenesis of placenta accreta. We focused on the transforming growth factor (TGF)-β1-Smad pathway and investigated the intrinsic relationship between the time- and dose-dependent inhibition of the ubiquitinating enzyme UCHL5 using bAP15, a deubiquitinase inhibitor, after TGF-β1 stimulation and the invasive and angiogenic potential of two cell lines, gestational choriocarcinoma cell line JEG-3 and trophoblast cell line HTR-8/SVneo. UCHL5 inhibition negatively regulated TGF-β1-induced Smad2 activation, decreasing extravillous trophoblast invasiveness. Smad1/5/9 and extracellular signal-regulated kinase (ERK) were simultaneously activated, and vascular endothelial growth factor was secreted into the trophoblast medium. However, extravillous trophoblast culture supernatant severely impaired the vasculogenic potential of human umbilical vein endothelial cells. These results suggest that the downstream ERK pathway and Smad1/5/9 potentially regulate the TGF-β1-Smad pathway in extravillous trophoblasts, whereas Smad2 contributes to their invasiveness. The abnormal invasive and angiogenic capacities of extravillous cells, likely driven by the interaction between TGF-β1-Smad and ERK pathways, underlie the pathogenesis of placenta accreta.
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spelling pubmed-105306862023-09-28 The TGF-β/UCHL5/Smad2 Axis Contributes to the Pathogenesis of Placenta Accreta Hashimoto, Kei Miyagawa, Yuko Watanabe, Saya Takasaki, Kazuki Nishizawa, Miki Yatsuki, Keita Takahashi, Yuko Kamata, Hideo Kihira, Chikara Hiraike, Haruko Sasamori, Yukifumi Kido, Koichiro Ryo, Eiji Nagasaka, Kazunori Int J Mol Sci Article Placenta accreta is a high-risk condition causing obstetric crisis and hemorrhage; however, its pathogenesis remains unknown. We aimed to identify the factors contributing to trophoblast invasiveness and angiogenic potential, which in turn drive the pathogenesis of placenta accreta. We focused on the transforming growth factor (TGF)-β1-Smad pathway and investigated the intrinsic relationship between the time- and dose-dependent inhibition of the ubiquitinating enzyme UCHL5 using bAP15, a deubiquitinase inhibitor, after TGF-β1 stimulation and the invasive and angiogenic potential of two cell lines, gestational choriocarcinoma cell line JEG-3 and trophoblast cell line HTR-8/SVneo. UCHL5 inhibition negatively regulated TGF-β1-induced Smad2 activation, decreasing extravillous trophoblast invasiveness. Smad1/5/9 and extracellular signal-regulated kinase (ERK) were simultaneously activated, and vascular endothelial growth factor was secreted into the trophoblast medium. However, extravillous trophoblast culture supernatant severely impaired the vasculogenic potential of human umbilical vein endothelial cells. These results suggest that the downstream ERK pathway and Smad1/5/9 potentially regulate the TGF-β1-Smad pathway in extravillous trophoblasts, whereas Smad2 contributes to their invasiveness. The abnormal invasive and angiogenic capacities of extravillous cells, likely driven by the interaction between TGF-β1-Smad and ERK pathways, underlie the pathogenesis of placenta accreta. MDPI 2023-09-05 /pmc/articles/PMC10530686/ /pubmed/37762005 http://dx.doi.org/10.3390/ijms241813706 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hashimoto, Kei
Miyagawa, Yuko
Watanabe, Saya
Takasaki, Kazuki
Nishizawa, Miki
Yatsuki, Keita
Takahashi, Yuko
Kamata, Hideo
Kihira, Chikara
Hiraike, Haruko
Sasamori, Yukifumi
Kido, Koichiro
Ryo, Eiji
Nagasaka, Kazunori
The TGF-β/UCHL5/Smad2 Axis Contributes to the Pathogenesis of Placenta Accreta
title The TGF-β/UCHL5/Smad2 Axis Contributes to the Pathogenesis of Placenta Accreta
title_full The TGF-β/UCHL5/Smad2 Axis Contributes to the Pathogenesis of Placenta Accreta
title_fullStr The TGF-β/UCHL5/Smad2 Axis Contributes to the Pathogenesis of Placenta Accreta
title_full_unstemmed The TGF-β/UCHL5/Smad2 Axis Contributes to the Pathogenesis of Placenta Accreta
title_short The TGF-β/UCHL5/Smad2 Axis Contributes to the Pathogenesis of Placenta Accreta
title_sort tgf-β/uchl5/smad2 axis contributes to the pathogenesis of placenta accreta
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10530686/
https://www.ncbi.nlm.nih.gov/pubmed/37762005
http://dx.doi.org/10.3390/ijms241813706
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