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Progesterone induces cell apoptosis via the CACNA2D3/Ca(2+)/p38 MAPK pathway in endometrial cancer

Endometrial cancer (EC) is one of the most common malignant gynecological tumors in women. The main treatments for EC (surgery, chemotherapy and radiation therapy) produce significant side effects. Thus, it is urgent to identify promising therapeutic targets and prognostic markers. CACNA2D3, as a me...

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Autores principales: Kong, Xiangnan, Li, Min, Shao, Kai, Yang, Yinrong, Wang, Qian, Cai, Meijuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: D.A. Spandidos 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6908942/
https://www.ncbi.nlm.nih.gov/pubmed/31746409
http://dx.doi.org/10.3892/or.2019.7396
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author Kong, Xiangnan
Li, Min
Shao, Kai
Yang, Yinrong
Wang, Qian
Cai, Meijuan
author_facet Kong, Xiangnan
Li, Min
Shao, Kai
Yang, Yinrong
Wang, Qian
Cai, Meijuan
author_sort Kong, Xiangnan
collection PubMed
description Endometrial cancer (EC) is one of the most common malignant gynecological tumors in women. The main treatments for EC (surgery, chemotherapy and radiation therapy) produce significant side effects. Thus, it is urgent to identify promising therapeutic targets and prognostic markers. CACNA2D3, as a member of the calcium channel regulatory α2δ subunit family, is reported to exert a tumor suppressive effect in numerous cancers. However, the function of CACNA2D3 in EC is not well known. In the present study, CACNA2D3 was lowly expressed in EC tissues and cells. The overexpression of CACNA2D3 via lentiviral particle injection significantly blocked the tumor growth in an in vivo xenograft model. In vitro, the overexpression of CACNA2D3 markedly inhibited cell proliferation and migration, and promoted cell apoptosis and calcium influx. These data revealed that CACNA2D3 functions as a tumor suppressor in EC. It was also revealed that the addition of progesterone (P4) blocked tumor growth in Ishikawa-injected nude mice. P4 induced the expression of CACNA2D3 in vivo and in vitro, and the silencing of CACNA2D3 affected P4-inhibited cell proliferation and P4-induced cell apoptosis and calcium influx. In Ishikawa cells, P4 enhanced the expression of phosphorylated (p)-p38 MAPK and PTEN, but blocked the levels of p-PI3K and p-AKT. The knockdown of CACNA2D3 blocked the function of P4. These data revealed that P4 promoted cell apoptosis via the activation of the CACNA2D3/Ca(2+)/p38 MAPK pathway, and blocked cell proliferation via suppression of the PI3K/AKT pathway. Collectively, these findings indicated the antitumor role of CACNA2D3 in EC, and revealed the mechanism of P4 inhibition of EC progression, which provided a new target for EC therapy and new evidence for P4 in EC therapy.
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spelling pubmed-69089422019-12-18 Progesterone induces cell apoptosis via the CACNA2D3/Ca(2+)/p38 MAPK pathway in endometrial cancer Kong, Xiangnan Li, Min Shao, Kai Yang, Yinrong Wang, Qian Cai, Meijuan Oncol Rep Articles Endometrial cancer (EC) is one of the most common malignant gynecological tumors in women. The main treatments for EC (surgery, chemotherapy and radiation therapy) produce significant side effects. Thus, it is urgent to identify promising therapeutic targets and prognostic markers. CACNA2D3, as a member of the calcium channel regulatory α2δ subunit family, is reported to exert a tumor suppressive effect in numerous cancers. However, the function of CACNA2D3 in EC is not well known. In the present study, CACNA2D3 was lowly expressed in EC tissues and cells. The overexpression of CACNA2D3 via lentiviral particle injection significantly blocked the tumor growth in an in vivo xenograft model. In vitro, the overexpression of CACNA2D3 markedly inhibited cell proliferation and migration, and promoted cell apoptosis and calcium influx. These data revealed that CACNA2D3 functions as a tumor suppressor in EC. It was also revealed that the addition of progesterone (P4) blocked tumor growth in Ishikawa-injected nude mice. P4 induced the expression of CACNA2D3 in vivo and in vitro, and the silencing of CACNA2D3 affected P4-inhibited cell proliferation and P4-induced cell apoptosis and calcium influx. In Ishikawa cells, P4 enhanced the expression of phosphorylated (p)-p38 MAPK and PTEN, but blocked the levels of p-PI3K and p-AKT. The knockdown of CACNA2D3 blocked the function of P4. These data revealed that P4 promoted cell apoptosis via the activation of the CACNA2D3/Ca(2+)/p38 MAPK pathway, and blocked cell proliferation via suppression of the PI3K/AKT pathway. Collectively, these findings indicated the antitumor role of CACNA2D3 in EC, and revealed the mechanism of P4 inhibition of EC progression, which provided a new target for EC therapy and new evidence for P4 in EC therapy. D.A. Spandidos 2020-01 2019-10-31 /pmc/articles/PMC6908942/ /pubmed/31746409 http://dx.doi.org/10.3892/or.2019.7396 Text en Copyright: © Kong et al. This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which permits use and distribution in any medium, provided the original work is properly cited, the use is non-commercial and no modifications or adaptations are made.
spellingShingle Articles
Kong, Xiangnan
Li, Min
Shao, Kai
Yang, Yinrong
Wang, Qian
Cai, Meijuan
Progesterone induces cell apoptosis via the CACNA2D3/Ca(2+)/p38 MAPK pathway in endometrial cancer
title Progesterone induces cell apoptosis via the CACNA2D3/Ca(2+)/p38 MAPK pathway in endometrial cancer
title_full Progesterone induces cell apoptosis via the CACNA2D3/Ca(2+)/p38 MAPK pathway in endometrial cancer
title_fullStr Progesterone induces cell apoptosis via the CACNA2D3/Ca(2+)/p38 MAPK pathway in endometrial cancer
title_full_unstemmed Progesterone induces cell apoptosis via the CACNA2D3/Ca(2+)/p38 MAPK pathway in endometrial cancer
title_short Progesterone induces cell apoptosis via the CACNA2D3/Ca(2+)/p38 MAPK pathway in endometrial cancer
title_sort progesterone induces cell apoptosis via the cacna2d3/ca(2+)/p38 mapk pathway in endometrial cancer
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6908942/
https://www.ncbi.nlm.nih.gov/pubmed/31746409
http://dx.doi.org/10.3892/or.2019.7396
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