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Interleukin-8 is a key mediator of FKBP51-induced melanoma growth, angiogenesis and metastasis

BACKGROUND: FKBP51 is overexpressed in melanoma and impacts tumour cell properties. However, its comprehensive role in melanoma pathogenesis and underlying mechanism(s) remain elusive. METHODS: FKBP51 was stably silenced in aggressive melanoma cell lines and its effect examined in vitro and in mouse...

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Autores principales: Srivastava, S K, Bhardwaj, A, Arora, S, Tyagi, N, Singh, A P, Carter, J E, Scammell, J G, Fodstad, Ø, Singh, S
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4647250/
https://www.ncbi.nlm.nih.gov/pubmed/25942396
http://dx.doi.org/10.1038/bjc.2015.154
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author Srivastava, S K
Bhardwaj, A
Arora, S
Tyagi, N
Singh, A P
Carter, J E
Scammell, J G
Fodstad, Ø
Singh, S
author_facet Srivastava, S K
Bhardwaj, A
Arora, S
Tyagi, N
Singh, A P
Carter, J E
Scammell, J G
Fodstad, Ø
Singh, S
author_sort Srivastava, S K
collection PubMed
description BACKGROUND: FKBP51 is overexpressed in melanoma and impacts tumour cell properties. However, its comprehensive role in melanoma pathogenesis and underlying mechanism(s) remain elusive. METHODS: FKBP51 was stably silenced in aggressive melanoma cell lines and its effect examined in vitro and in mouse model. Histological/immunohistochemical analyses were performed to confirm metastasis, angiogenesis and neutrophil infiltration. Gene expression was analyzed by qRT–PCR, immunoblot and/or ELISA. NF-κB transcriptional activity and promoter binding were monitored by luciferase-based promoter-reporter and ChIP assays, respectively. Interleukin (IL)-8 inhibition was achieved by gene silencing or neutralising-antibody treatment. RESULTS: FKBP51 silencing reduced melanoma growth, metastasis, angiogenesis and neutrophil infiltration and led to IL-8 downregulation through NF-κB suppression in cell lines and tumour xenografts. IL-8 inhibition drastically decreased growth, migration and invasiveness of FKPB51-overexpressing cells; whereas its treatment partially restored the suppressed phenotypes of FKBP51-silenced melanoma cells. Interleukin-8 depletion in conditioned medium (CM) of FKBP51-overexpressing melanoma cells inhibited endothelial cell proliferation and capillary-like structure formation, whereas its treatment promoted these effects in endothelial cells cultured in CM of FKBP51-silenced melanoma cells. CONCLUSIONS: FKBP51 promotes melanoma growth, metastasis and angiogenesis, and IL-8 plays a key role in these processes. Thus, targeting of FKBP51 or its upstream or downstream regulatory pathways could lead to effective therapeutic strategies against melanoma.
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spelling pubmed-46472502016-05-26 Interleukin-8 is a key mediator of FKBP51-induced melanoma growth, angiogenesis and metastasis Srivastava, S K Bhardwaj, A Arora, S Tyagi, N Singh, A P Carter, J E Scammell, J G Fodstad, Ø Singh, S Br J Cancer Molecular Diagnostics BACKGROUND: FKBP51 is overexpressed in melanoma and impacts tumour cell properties. However, its comprehensive role in melanoma pathogenesis and underlying mechanism(s) remain elusive. METHODS: FKBP51 was stably silenced in aggressive melanoma cell lines and its effect examined in vitro and in mouse model. Histological/immunohistochemical analyses were performed to confirm metastasis, angiogenesis and neutrophil infiltration. Gene expression was analyzed by qRT–PCR, immunoblot and/or ELISA. NF-κB transcriptional activity and promoter binding were monitored by luciferase-based promoter-reporter and ChIP assays, respectively. Interleukin (IL)-8 inhibition was achieved by gene silencing or neutralising-antibody treatment. RESULTS: FKBP51 silencing reduced melanoma growth, metastasis, angiogenesis and neutrophil infiltration and led to IL-8 downregulation through NF-κB suppression in cell lines and tumour xenografts. IL-8 inhibition drastically decreased growth, migration and invasiveness of FKPB51-overexpressing cells; whereas its treatment partially restored the suppressed phenotypes of FKBP51-silenced melanoma cells. Interleukin-8 depletion in conditioned medium (CM) of FKBP51-overexpressing melanoma cells inhibited endothelial cell proliferation and capillary-like structure formation, whereas its treatment promoted these effects in endothelial cells cultured in CM of FKBP51-silenced melanoma cells. CONCLUSIONS: FKBP51 promotes melanoma growth, metastasis and angiogenesis, and IL-8 plays a key role in these processes. Thus, targeting of FKBP51 or its upstream or downstream regulatory pathways could lead to effective therapeutic strategies against melanoma. Nature Publishing Group 2015-05-26 2015-05-05 /pmc/articles/PMC4647250/ /pubmed/25942396 http://dx.doi.org/10.1038/bjc.2015.154 Text en Copyright © 2015 Cancer Research UK http://creativecommons.org/licenses/by-nc-sa/4.0/ From twelve months after its original publication, this work is licensed under the Creative Commons Attribution-NonCommercial-Share Alike 4.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-sa/4.0/
spellingShingle Molecular Diagnostics
Srivastava, S K
Bhardwaj, A
Arora, S
Tyagi, N
Singh, A P
Carter, J E
Scammell, J G
Fodstad, Ø
Singh, S
Interleukin-8 is a key mediator of FKBP51-induced melanoma growth, angiogenesis and metastasis
title Interleukin-8 is a key mediator of FKBP51-induced melanoma growth, angiogenesis and metastasis
title_full Interleukin-8 is a key mediator of FKBP51-induced melanoma growth, angiogenesis and metastasis
title_fullStr Interleukin-8 is a key mediator of FKBP51-induced melanoma growth, angiogenesis and metastasis
title_full_unstemmed Interleukin-8 is a key mediator of FKBP51-induced melanoma growth, angiogenesis and metastasis
title_short Interleukin-8 is a key mediator of FKBP51-induced melanoma growth, angiogenesis and metastasis
title_sort interleukin-8 is a key mediator of fkbp51-induced melanoma growth, angiogenesis and metastasis
topic Molecular Diagnostics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4647250/
https://www.ncbi.nlm.nih.gov/pubmed/25942396
http://dx.doi.org/10.1038/bjc.2015.154
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