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Loss of Two-Pore Channel 2 (TPC2) Expression Increases the Metastatic Traits of Melanoma Cells by a Mechanism Involving the Hippo Signalling Pathway and Store-Operated Calcium Entry

Melanoma is one of the most aggressive and treatment-resistant human cancers. The two-pore channel 2 (TPC2) is located on late endosomes, lysosomes and melanosomes. Here, we characterized how TPC2 knockout (KO) affected human melanoma cells derived from a metastatic site. TPC2 KO increased these cel...

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Autores principales: D’Amore, Antonella, Hanbashi, Ali Ahmed, Di Agostino, Silvia, Palombi, Fioretta, Sacconi, Andrea, Voruganti, Aniruddha, Taggi, Marilena, Canipari, Rita, Blandino, Giovanni, Parrington, John, Filippini, Antonio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7564716/
https://www.ncbi.nlm.nih.gov/pubmed/32846966
http://dx.doi.org/10.3390/cancers12092391
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author D’Amore, Antonella
Hanbashi, Ali Ahmed
Di Agostino, Silvia
Palombi, Fioretta
Sacconi, Andrea
Voruganti, Aniruddha
Taggi, Marilena
Canipari, Rita
Blandino, Giovanni
Parrington, John
Filippini, Antonio
author_facet D’Amore, Antonella
Hanbashi, Ali Ahmed
Di Agostino, Silvia
Palombi, Fioretta
Sacconi, Andrea
Voruganti, Aniruddha
Taggi, Marilena
Canipari, Rita
Blandino, Giovanni
Parrington, John
Filippini, Antonio
author_sort D’Amore, Antonella
collection PubMed
description Melanoma is one of the most aggressive and treatment-resistant human cancers. The two-pore channel 2 (TPC2) is located on late endosomes, lysosomes and melanosomes. Here, we characterized how TPC2 knockout (KO) affected human melanoma cells derived from a metastatic site. TPC2 KO increased these cells’ ability to invade the extracelullar matrix and was associated with the increased expression of mesenchymal markers ZEB-1, Vimentin and N-Cadherin, and the enhanced secretion of MMP9. TPC2 KO also activated genes regulated by YAP/TAZ, which are key regulators of tumourigenesis and metastasis. Expression levels of ORAI1, a component of store-operated Ca(2+) entry (SOCE), and PKC-βII, part of the HIPPO pathway that negatively regulates YAP/TAZ activity, were reduced by TPC2 KO and RNA interference knockdown. We propose a cellular mechanism mediated by ORAI1/Ca(2+)/PKC-βII to explain these findings. Highlighting their potential clinical significance, patients with metastatic tumours showed a reduction in TPC2 expression. Our research indicates a novel role of TPC2 in melanoma. While TPC2 loss may not activate YAP/TAZ target genes in primary melanoma, in metastatic melanoma it could activate such genes and increase cancer aggressiveness. These findings aid the understanding of tumourigenesis mechanisms and could provide new diagnostic and treatment strategies for skin cancer and other metastatic cancers.
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spelling pubmed-75647162020-10-26 Loss of Two-Pore Channel 2 (TPC2) Expression Increases the Metastatic Traits of Melanoma Cells by a Mechanism Involving the Hippo Signalling Pathway and Store-Operated Calcium Entry D’Amore, Antonella Hanbashi, Ali Ahmed Di Agostino, Silvia Palombi, Fioretta Sacconi, Andrea Voruganti, Aniruddha Taggi, Marilena Canipari, Rita Blandino, Giovanni Parrington, John Filippini, Antonio Cancers (Basel) Article Melanoma is one of the most aggressive and treatment-resistant human cancers. The two-pore channel 2 (TPC2) is located on late endosomes, lysosomes and melanosomes. Here, we characterized how TPC2 knockout (KO) affected human melanoma cells derived from a metastatic site. TPC2 KO increased these cells’ ability to invade the extracelullar matrix and was associated with the increased expression of mesenchymal markers ZEB-1, Vimentin and N-Cadherin, and the enhanced secretion of MMP9. TPC2 KO also activated genes regulated by YAP/TAZ, which are key regulators of tumourigenesis and metastasis. Expression levels of ORAI1, a component of store-operated Ca(2+) entry (SOCE), and PKC-βII, part of the HIPPO pathway that negatively regulates YAP/TAZ activity, were reduced by TPC2 KO and RNA interference knockdown. We propose a cellular mechanism mediated by ORAI1/Ca(2+)/PKC-βII to explain these findings. Highlighting their potential clinical significance, patients with metastatic tumours showed a reduction in TPC2 expression. Our research indicates a novel role of TPC2 in melanoma. While TPC2 loss may not activate YAP/TAZ target genes in primary melanoma, in metastatic melanoma it could activate such genes and increase cancer aggressiveness. These findings aid the understanding of tumourigenesis mechanisms and could provide new diagnostic and treatment strategies for skin cancer and other metastatic cancers. MDPI 2020-08-24 /pmc/articles/PMC7564716/ /pubmed/32846966 http://dx.doi.org/10.3390/cancers12092391 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
D’Amore, Antonella
Hanbashi, Ali Ahmed
Di Agostino, Silvia
Palombi, Fioretta
Sacconi, Andrea
Voruganti, Aniruddha
Taggi, Marilena
Canipari, Rita
Blandino, Giovanni
Parrington, John
Filippini, Antonio
Loss of Two-Pore Channel 2 (TPC2) Expression Increases the Metastatic Traits of Melanoma Cells by a Mechanism Involving the Hippo Signalling Pathway and Store-Operated Calcium Entry
title Loss of Two-Pore Channel 2 (TPC2) Expression Increases the Metastatic Traits of Melanoma Cells by a Mechanism Involving the Hippo Signalling Pathway and Store-Operated Calcium Entry
title_full Loss of Two-Pore Channel 2 (TPC2) Expression Increases the Metastatic Traits of Melanoma Cells by a Mechanism Involving the Hippo Signalling Pathway and Store-Operated Calcium Entry
title_fullStr Loss of Two-Pore Channel 2 (TPC2) Expression Increases the Metastatic Traits of Melanoma Cells by a Mechanism Involving the Hippo Signalling Pathway and Store-Operated Calcium Entry
title_full_unstemmed Loss of Two-Pore Channel 2 (TPC2) Expression Increases the Metastatic Traits of Melanoma Cells by a Mechanism Involving the Hippo Signalling Pathway and Store-Operated Calcium Entry
title_short Loss of Two-Pore Channel 2 (TPC2) Expression Increases the Metastatic Traits of Melanoma Cells by a Mechanism Involving the Hippo Signalling Pathway and Store-Operated Calcium Entry
title_sort loss of two-pore channel 2 (tpc2) expression increases the metastatic traits of melanoma cells by a mechanism involving the hippo signalling pathway and store-operated calcium entry
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7564716/
https://www.ncbi.nlm.nih.gov/pubmed/32846966
http://dx.doi.org/10.3390/cancers12092391
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