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Human Renal Normal, Tumoral, and Cancer Stem Cells Express Membrane-Bound Interleukin-15 Isoforms Displaying Different Functions()

Intrarenal interleukin-15 (IL-15) participates to renal pathophysiology, but the role of its different membrane-bound isoforms remains to be elucidated. In this study, we reassess the biology of membrane-bound IL-15 (mb-IL-15) isoforms by comparing primary cultures of human renal proximal tubular ep...

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Autores principales: Azzi, Sandy, Gallerne, Cindy, Romei, Cristina, Le Coz, Vincent, Gangemi, Rosaria, Khawam, Krystel, Devocelle, Aurore, Gu, Yanhong, Bruno, Stefania, Ferrini, Silvano, Chouaib, Salem, Eid, Pierre, Azzarone, Bruno, Giron-Michel, Julien
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Neoplasia Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4719000/
https://www.ncbi.nlm.nih.gov/pubmed/26152359
http://dx.doi.org/10.1016/j.neo.2015.06.002
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author Azzi, Sandy
Gallerne, Cindy
Romei, Cristina
Le Coz, Vincent
Gangemi, Rosaria
Khawam, Krystel
Devocelle, Aurore
Gu, Yanhong
Bruno, Stefania
Ferrini, Silvano
Chouaib, Salem
Eid, Pierre
Azzarone, Bruno
Giron-Michel, Julien
author_facet Azzi, Sandy
Gallerne, Cindy
Romei, Cristina
Le Coz, Vincent
Gangemi, Rosaria
Khawam, Krystel
Devocelle, Aurore
Gu, Yanhong
Bruno, Stefania
Ferrini, Silvano
Chouaib, Salem
Eid, Pierre
Azzarone, Bruno
Giron-Michel, Julien
author_sort Azzi, Sandy
collection PubMed
description Intrarenal interleukin-15 (IL-15) participates to renal pathophysiology, but the role of its different membrane-bound isoforms remains to be elucidated. In this study, we reassess the biology of membrane-bound IL-15 (mb-IL-15) isoforms by comparing primary cultures of human renal proximal tubular epithelial cells (RPTEC) to peritumoral (ptumTEC), tumoral (RCC), and cancer stem cells (CSC/CD105(+)). RPTEC express a 14 to 16 kDa mb-IL-15, whose existence has been assumed but never formally demonstrated and likely represents the isoform anchored at the cell membrane through the IL-15 receptor α (IL-15Rα) chain, because it is sensitive to acidic treatment and is not competent to deliver a reverse signal. By contrast, ptumTEC, RCC, and CSC express a novel N-hyperglycosylated, short-lived transmembrane mb-IL-15 (tmb-IL-15) isoform around 27 kDa, resistant to acidic shock, delivering a reverse signal in response to its soluble receptor (sIL-15Rα). This reverse signal triggers the down-regulation of the tumor suppressor gene E-cadherin in ptumTEC and RCC but not in CSC/CD105(+), where it promotes survival. Indeed, through the AKT pathway, tmb-IL-15 protects CSC/CD105(+) from non-programmed cell death induced by serum starvation. Finally, both mb-IL-15 and tmb-IL-15 are sensitive to metalloproteases, and the cleaved tmb-IL-15 (25 kDa) displays a powerful anti-apoptotic effect on human hematopoietic cells. Overall, our data indicate that both mb-IL-15 and tmb-IL-15 isoforms play a complex role in renal pathophysiology downregulating E-cadherin and favoring cell survival. Moreover, “apparently normal” ptumTEC cells, sharing different properties with RCC, could contribute to organize an enlarged peritumoral “preneoplastic” environment committed to favor tumor progression.
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spelling pubmed-47190002016-02-19 Human Renal Normal, Tumoral, and Cancer Stem Cells Express Membrane-Bound Interleukin-15 Isoforms Displaying Different Functions() Azzi, Sandy Gallerne, Cindy Romei, Cristina Le Coz, Vincent Gangemi, Rosaria Khawam, Krystel Devocelle, Aurore Gu, Yanhong Bruno, Stefania Ferrini, Silvano Chouaib, Salem Eid, Pierre Azzarone, Bruno Giron-Michel, Julien Neoplasia Article Intrarenal interleukin-15 (IL-15) participates to renal pathophysiology, but the role of its different membrane-bound isoforms remains to be elucidated. In this study, we reassess the biology of membrane-bound IL-15 (mb-IL-15) isoforms by comparing primary cultures of human renal proximal tubular epithelial cells (RPTEC) to peritumoral (ptumTEC), tumoral (RCC), and cancer stem cells (CSC/CD105(+)). RPTEC express a 14 to 16 kDa mb-IL-15, whose existence has been assumed but never formally demonstrated and likely represents the isoform anchored at the cell membrane through the IL-15 receptor α (IL-15Rα) chain, because it is sensitive to acidic treatment and is not competent to deliver a reverse signal. By contrast, ptumTEC, RCC, and CSC express a novel N-hyperglycosylated, short-lived transmembrane mb-IL-15 (tmb-IL-15) isoform around 27 kDa, resistant to acidic shock, delivering a reverse signal in response to its soluble receptor (sIL-15Rα). This reverse signal triggers the down-regulation of the tumor suppressor gene E-cadherin in ptumTEC and RCC but not in CSC/CD105(+), where it promotes survival. Indeed, through the AKT pathway, tmb-IL-15 protects CSC/CD105(+) from non-programmed cell death induced by serum starvation. Finally, both mb-IL-15 and tmb-IL-15 are sensitive to metalloproteases, and the cleaved tmb-IL-15 (25 kDa) displays a powerful anti-apoptotic effect on human hematopoietic cells. Overall, our data indicate that both mb-IL-15 and tmb-IL-15 isoforms play a complex role in renal pathophysiology downregulating E-cadherin and favoring cell survival. Moreover, “apparently normal” ptumTEC cells, sharing different properties with RCC, could contribute to organize an enlarged peritumoral “preneoplastic” environment committed to favor tumor progression. Neoplasia Press 2015-07-04 /pmc/articles/PMC4719000/ /pubmed/26152359 http://dx.doi.org/10.1016/j.neo.2015.06.002 Text en © 2015 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Azzi, Sandy
Gallerne, Cindy
Romei, Cristina
Le Coz, Vincent
Gangemi, Rosaria
Khawam, Krystel
Devocelle, Aurore
Gu, Yanhong
Bruno, Stefania
Ferrini, Silvano
Chouaib, Salem
Eid, Pierre
Azzarone, Bruno
Giron-Michel, Julien
Human Renal Normal, Tumoral, and Cancer Stem Cells Express Membrane-Bound Interleukin-15 Isoforms Displaying Different Functions()
title Human Renal Normal, Tumoral, and Cancer Stem Cells Express Membrane-Bound Interleukin-15 Isoforms Displaying Different Functions()
title_full Human Renal Normal, Tumoral, and Cancer Stem Cells Express Membrane-Bound Interleukin-15 Isoforms Displaying Different Functions()
title_fullStr Human Renal Normal, Tumoral, and Cancer Stem Cells Express Membrane-Bound Interleukin-15 Isoforms Displaying Different Functions()
title_full_unstemmed Human Renal Normal, Tumoral, and Cancer Stem Cells Express Membrane-Bound Interleukin-15 Isoforms Displaying Different Functions()
title_short Human Renal Normal, Tumoral, and Cancer Stem Cells Express Membrane-Bound Interleukin-15 Isoforms Displaying Different Functions()
title_sort human renal normal, tumoral, and cancer stem cells express membrane-bound interleukin-15 isoforms displaying different functions()
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4719000/
https://www.ncbi.nlm.nih.gov/pubmed/26152359
http://dx.doi.org/10.1016/j.neo.2015.06.002
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