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NLRP7 Enhances Choriocarcinoma Cell Survival and Camouflage in an Inflammasome Independent Pathway

Background: Gestational choriocarcinoma (GC) is a highly malignant trophoblastic tumor that often develops from a complete hydatidiform mole (HM). NLRP7 is the major gene responsible for recurrent HM and is involved in the innate immune response, inflammation and apoptosis. NLRP7 can function in an...

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Autores principales: Reynaud, Déborah, Alfaidy, Nadia, Collet, Constance, Lemaitre, Nicolas, Sergent, Frederic, Miege, Céline, Soleilhac, Emmanuelle, Assi, Alaa Al, Murthi, Padma, Courtois, Gilles, Fauvarque, Marie-Odile, Slim, Rima, Benharouga, Mohamed, Abi Nahed, Roland
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10099745/
https://www.ncbi.nlm.nih.gov/pubmed/36980199
http://dx.doi.org/10.3390/cells12060857
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author Reynaud, Déborah
Alfaidy, Nadia
Collet, Constance
Lemaitre, Nicolas
Sergent, Frederic
Miege, Céline
Soleilhac, Emmanuelle
Assi, Alaa Al
Murthi, Padma
Courtois, Gilles
Fauvarque, Marie-Odile
Slim, Rima
Benharouga, Mohamed
Abi Nahed, Roland
author_facet Reynaud, Déborah
Alfaidy, Nadia
Collet, Constance
Lemaitre, Nicolas
Sergent, Frederic
Miege, Céline
Soleilhac, Emmanuelle
Assi, Alaa Al
Murthi, Padma
Courtois, Gilles
Fauvarque, Marie-Odile
Slim, Rima
Benharouga, Mohamed
Abi Nahed, Roland
author_sort Reynaud, Déborah
collection PubMed
description Background: Gestational choriocarcinoma (GC) is a highly malignant trophoblastic tumor that often develops from a complete hydatidiform mole (HM). NLRP7 is the major gene responsible for recurrent HM and is involved in the innate immune response, inflammation and apoptosis. NLRP7 can function in an inflammasome-dependent or -independent pathway. Recently, we have demonstrated that NLRP7 is highly expressed in GC tumor cells and contributes to their tumorigenesis. However, the underlying mechanisms are still unknown. Here, we investigated the mechanism by which NLRP7 controls these processes in malignant (JEG-3) and non-tumor (HTR8/SVneo) trophoblastic cells. Cell survival, dedifferentiation, camouflage, and aggressiveness were compared between normal JEG-3 cells or knockdown for NLRP7, JEG-3 Sh NLRP7. In addition, HTR8/SVneo cells overexpressing NLRP7 were used to determine the impact of NLRP7 overexpression on non-tumor cells. NLRP7 involvement in tumor cell growth and tolerance was further characterized in vivo using the metastatic mouse model of GC. Results: We demonstrate that NLRP7 (i) functions in an inflammasome-dependent and -independent manners in HTR8/SVneo and JEG-3 cells, respectively; (ii) differentially regulates the activity of NF-κB in tumor and non-tumor cells; (iii) increases malignant cell survival, dedifferentiation, and camouflage; and (iv) facilitates tumor cells colonization of the lungs in the preclinical model of GC. Conclusions: This study demonstrates for the first time the mechanism by which NLRP7, independently of its inflammasome machinery, contributes to GC growth and tumorigenesis. The clinical relevance of NLRP7 in this rare cancer highlights its potential therapeutic promise as a molecular target to treat resistant GC patients.
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spelling pubmed-100997452023-04-14 NLRP7 Enhances Choriocarcinoma Cell Survival and Camouflage in an Inflammasome Independent Pathway Reynaud, Déborah Alfaidy, Nadia Collet, Constance Lemaitre, Nicolas Sergent, Frederic Miege, Céline Soleilhac, Emmanuelle Assi, Alaa Al Murthi, Padma Courtois, Gilles Fauvarque, Marie-Odile Slim, Rima Benharouga, Mohamed Abi Nahed, Roland Cells Article Background: Gestational choriocarcinoma (GC) is a highly malignant trophoblastic tumor that often develops from a complete hydatidiform mole (HM). NLRP7 is the major gene responsible for recurrent HM and is involved in the innate immune response, inflammation and apoptosis. NLRP7 can function in an inflammasome-dependent or -independent pathway. Recently, we have demonstrated that NLRP7 is highly expressed in GC tumor cells and contributes to their tumorigenesis. However, the underlying mechanisms are still unknown. Here, we investigated the mechanism by which NLRP7 controls these processes in malignant (JEG-3) and non-tumor (HTR8/SVneo) trophoblastic cells. Cell survival, dedifferentiation, camouflage, and aggressiveness were compared between normal JEG-3 cells or knockdown for NLRP7, JEG-3 Sh NLRP7. In addition, HTR8/SVneo cells overexpressing NLRP7 were used to determine the impact of NLRP7 overexpression on non-tumor cells. NLRP7 involvement in tumor cell growth and tolerance was further characterized in vivo using the metastatic mouse model of GC. Results: We demonstrate that NLRP7 (i) functions in an inflammasome-dependent and -independent manners in HTR8/SVneo and JEG-3 cells, respectively; (ii) differentially regulates the activity of NF-κB in tumor and non-tumor cells; (iii) increases malignant cell survival, dedifferentiation, and camouflage; and (iv) facilitates tumor cells colonization of the lungs in the preclinical model of GC. Conclusions: This study demonstrates for the first time the mechanism by which NLRP7, independently of its inflammasome machinery, contributes to GC growth and tumorigenesis. The clinical relevance of NLRP7 in this rare cancer highlights its potential therapeutic promise as a molecular target to treat resistant GC patients. MDPI 2023-03-09 /pmc/articles/PMC10099745/ /pubmed/36980199 http://dx.doi.org/10.3390/cells12060857 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
Reynaud, Déborah
Alfaidy, Nadia
Collet, Constance
Lemaitre, Nicolas
Sergent, Frederic
Miege, Céline
Soleilhac, Emmanuelle
Assi, Alaa Al
Murthi, Padma
Courtois, Gilles
Fauvarque, Marie-Odile
Slim, Rima
Benharouga, Mohamed
Abi Nahed, Roland
NLRP7 Enhances Choriocarcinoma Cell Survival and Camouflage in an Inflammasome Independent Pathway
title NLRP7 Enhances Choriocarcinoma Cell Survival and Camouflage in an Inflammasome Independent Pathway
title_full NLRP7 Enhances Choriocarcinoma Cell Survival and Camouflage in an Inflammasome Independent Pathway
title_fullStr NLRP7 Enhances Choriocarcinoma Cell Survival and Camouflage in an Inflammasome Independent Pathway
title_full_unstemmed NLRP7 Enhances Choriocarcinoma Cell Survival and Camouflage in an Inflammasome Independent Pathway
title_short NLRP7 Enhances Choriocarcinoma Cell Survival and Camouflage in an Inflammasome Independent Pathway
title_sort nlrp7 enhances choriocarcinoma cell survival and camouflage in an inflammasome independent pathway
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10099745/
https://www.ncbi.nlm.nih.gov/pubmed/36980199
http://dx.doi.org/10.3390/cells12060857
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