Cargando…

Heme oxygenase-1 in the forefront of a multi-molecular network that governs cell–cell contacts and filopodia-induced zippering in prostate cancer

Prostate cancer (PCa) cells display abnormal expression of cytoskeletal proteins resulting in an augmented capacity to resist chemotherapy and colonize distant organs. We have previously shown that heme oxygenase 1 (HO-1) is implicated in cell morphology regulation in PCa. Here, through a multi ...

Descripción completa

Detalles Bibliográficos
Autores principales: Paez, Alejandra V, Pallavicini, Carla, Schuster, Federico, Valacco, Maria Pia, Giudice, Jimena, Ortiz, Emiliano G, Anselmino, Nicolás, Labanca, Estefania, Binaghi, Maria, Salierno, Marcelo, Martí, Marcelo A, Cotignola, Javier H, Woloszynska-Read, Anna, Bruno, Luciana, Levi, Valeria, Navone, Nora, Vazquez, Elba S, Gueron, Geraldine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5261017/
https://www.ncbi.nlm.nih.gov/pubmed/28032857
http://dx.doi.org/10.1038/cddis.2016.420
_version_ 1782499503413133312
author Paez, Alejandra V
Pallavicini, Carla
Schuster, Federico
Valacco, Maria Pia
Giudice, Jimena
Ortiz, Emiliano G
Anselmino, Nicolás
Labanca, Estefania
Binaghi, Maria
Salierno, Marcelo
Martí, Marcelo A
Cotignola, Javier H
Woloszynska-Read, Anna
Bruno, Luciana
Levi, Valeria
Navone, Nora
Vazquez, Elba S
Gueron, Geraldine
author_facet Paez, Alejandra V
Pallavicini, Carla
Schuster, Federico
Valacco, Maria Pia
Giudice, Jimena
Ortiz, Emiliano G
Anselmino, Nicolás
Labanca, Estefania
Binaghi, Maria
Salierno, Marcelo
Martí, Marcelo A
Cotignola, Javier H
Woloszynska-Read, Anna
Bruno, Luciana
Levi, Valeria
Navone, Nora
Vazquez, Elba S
Gueron, Geraldine
author_sort Paez, Alejandra V
collection PubMed
description Prostate cancer (PCa) cells display abnormal expression of cytoskeletal proteins resulting in an augmented capacity to resist chemotherapy and colonize distant organs. We have previously shown that heme oxygenase 1 (HO-1) is implicated in cell morphology regulation in PCa. Here, through a multi 'omics' approach we define the HO-1 interactome in PCa, identifying HO-1 molecular partners associated with the integrity of the cellular cytoskeleton. The bioinformatics screening for these cytoskeletal-related partners reveal that they are highly misregulated in prostate adenocarcinoma compared with normal prostate tissue. Under HO-1 induction, PCa cells present reduced frequency in migration events, trajectory and cell velocity and, a significant higher proportion of filopodia-like protrusions favoring zippering among neighboring cells. Moreover forced expression of HO-1 was also capable of altering cell protrusions in transwell co-culture systems of PCa cells with MC3T3 cells (pre-osteoblastic cell line). Accordingly, these effects were reversed under siHO. Transcriptomics profiling evidenced significant modulation of key markers related to cell adhesion and cell–cell communication under HO-1 induction. The integration from our omics-based research provides a four molecular pathway foundation (ANXA2/HMGA1/POU3F1; NFRSF13/GSN; TMOD3/RAI14/VWF; and PLAT/PLAU) behind HO-1 regulation of tumor cytoskeletal cell compartments. The complementary proteomics and transcriptomics approaches presented here promise to move us closer to unravel the molecular framework underpinning HO-1 involvement in the modulation of cytoskeleton pathways, pushing toward a less aggressive phenotype in PCa.
format Online
Article
Text
id pubmed-5261017
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Nature Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-52610172017-01-26 Heme oxygenase-1 in the forefront of a multi-molecular network that governs cell–cell contacts and filopodia-induced zippering in prostate cancer Paez, Alejandra V Pallavicini, Carla Schuster, Federico Valacco, Maria Pia Giudice, Jimena Ortiz, Emiliano G Anselmino, Nicolás Labanca, Estefania Binaghi, Maria Salierno, Marcelo Martí, Marcelo A Cotignola, Javier H Woloszynska-Read, Anna Bruno, Luciana Levi, Valeria Navone, Nora Vazquez, Elba S Gueron, Geraldine Cell Death Dis Original Article Prostate cancer (PCa) cells display abnormal expression of cytoskeletal proteins resulting in an augmented capacity to resist chemotherapy and colonize distant organs. We have previously shown that heme oxygenase 1 (HO-1) is implicated in cell morphology regulation in PCa. Here, through a multi 'omics' approach we define the HO-1 interactome in PCa, identifying HO-1 molecular partners associated with the integrity of the cellular cytoskeleton. The bioinformatics screening for these cytoskeletal-related partners reveal that they are highly misregulated in prostate adenocarcinoma compared with normal prostate tissue. Under HO-1 induction, PCa cells present reduced frequency in migration events, trajectory and cell velocity and, a significant higher proportion of filopodia-like protrusions favoring zippering among neighboring cells. Moreover forced expression of HO-1 was also capable of altering cell protrusions in transwell co-culture systems of PCa cells with MC3T3 cells (pre-osteoblastic cell line). Accordingly, these effects were reversed under siHO. Transcriptomics profiling evidenced significant modulation of key markers related to cell adhesion and cell–cell communication under HO-1 induction. The integration from our omics-based research provides a four molecular pathway foundation (ANXA2/HMGA1/POU3F1; NFRSF13/GSN; TMOD3/RAI14/VWF; and PLAT/PLAU) behind HO-1 regulation of tumor cytoskeletal cell compartments. The complementary proteomics and transcriptomics approaches presented here promise to move us closer to unravel the molecular framework underpinning HO-1 involvement in the modulation of cytoskeleton pathways, pushing toward a less aggressive phenotype in PCa. Nature Publishing Group 2016-12 2016-12-29 /pmc/articles/PMC5261017/ /pubmed/28032857 http://dx.doi.org/10.1038/cddis.2016.420 Text en Copyright © 2016 The Author(s) http://creativecommons.org/licenses/by/4.0/ Cell Death and Disease is an open-access journal published by Nature Publishing Group. This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Original Article
Paez, Alejandra V
Pallavicini, Carla
Schuster, Federico
Valacco, Maria Pia
Giudice, Jimena
Ortiz, Emiliano G
Anselmino, Nicolás
Labanca, Estefania
Binaghi, Maria
Salierno, Marcelo
Martí, Marcelo A
Cotignola, Javier H
Woloszynska-Read, Anna
Bruno, Luciana
Levi, Valeria
Navone, Nora
Vazquez, Elba S
Gueron, Geraldine
Heme oxygenase-1 in the forefront of a multi-molecular network that governs cell–cell contacts and filopodia-induced zippering in prostate cancer
title Heme oxygenase-1 in the forefront of a multi-molecular network that governs cell–cell contacts and filopodia-induced zippering in prostate cancer
title_full Heme oxygenase-1 in the forefront of a multi-molecular network that governs cell–cell contacts and filopodia-induced zippering in prostate cancer
title_fullStr Heme oxygenase-1 in the forefront of a multi-molecular network that governs cell–cell contacts and filopodia-induced zippering in prostate cancer
title_full_unstemmed Heme oxygenase-1 in the forefront of a multi-molecular network that governs cell–cell contacts and filopodia-induced zippering in prostate cancer
title_short Heme oxygenase-1 in the forefront of a multi-molecular network that governs cell–cell contacts and filopodia-induced zippering in prostate cancer
title_sort heme oxygenase-1 in the forefront of a multi-molecular network that governs cell–cell contacts and filopodia-induced zippering in prostate cancer
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5261017/
https://www.ncbi.nlm.nih.gov/pubmed/28032857
http://dx.doi.org/10.1038/cddis.2016.420
work_keys_str_mv AT paezalejandrav hemeoxygenase1intheforefrontofamultimolecularnetworkthatgovernscellcellcontactsandfilopodiainducedzipperinginprostatecancer
AT pallavicinicarla hemeoxygenase1intheforefrontofamultimolecularnetworkthatgovernscellcellcontactsandfilopodiainducedzipperinginprostatecancer
AT schusterfederico hemeoxygenase1intheforefrontofamultimolecularnetworkthatgovernscellcellcontactsandfilopodiainducedzipperinginprostatecancer
AT valaccomariapia hemeoxygenase1intheforefrontofamultimolecularnetworkthatgovernscellcellcontactsandfilopodiainducedzipperinginprostatecancer
AT giudicejimena hemeoxygenase1intheforefrontofamultimolecularnetworkthatgovernscellcellcontactsandfilopodiainducedzipperinginprostatecancer
AT ortizemilianog hemeoxygenase1intheforefrontofamultimolecularnetworkthatgovernscellcellcontactsandfilopodiainducedzipperinginprostatecancer
AT anselminonicolas hemeoxygenase1intheforefrontofamultimolecularnetworkthatgovernscellcellcontactsandfilopodiainducedzipperinginprostatecancer
AT labancaestefania hemeoxygenase1intheforefrontofamultimolecularnetworkthatgovernscellcellcontactsandfilopodiainducedzipperinginprostatecancer
AT binaghimaria hemeoxygenase1intheforefrontofamultimolecularnetworkthatgovernscellcellcontactsandfilopodiainducedzipperinginprostatecancer
AT saliernomarcelo hemeoxygenase1intheforefrontofamultimolecularnetworkthatgovernscellcellcontactsandfilopodiainducedzipperinginprostatecancer
AT martimarceloa hemeoxygenase1intheforefrontofamultimolecularnetworkthatgovernscellcellcontactsandfilopodiainducedzipperinginprostatecancer
AT cotignolajavierh hemeoxygenase1intheforefrontofamultimolecularnetworkthatgovernscellcellcontactsandfilopodiainducedzipperinginprostatecancer
AT woloszynskareadanna hemeoxygenase1intheforefrontofamultimolecularnetworkthatgovernscellcellcontactsandfilopodiainducedzipperinginprostatecancer
AT brunoluciana hemeoxygenase1intheforefrontofamultimolecularnetworkthatgovernscellcellcontactsandfilopodiainducedzipperinginprostatecancer
AT levivaleria hemeoxygenase1intheforefrontofamultimolecularnetworkthatgovernscellcellcontactsandfilopodiainducedzipperinginprostatecancer
AT navonenora hemeoxygenase1intheforefrontofamultimolecularnetworkthatgovernscellcellcontactsandfilopodiainducedzipperinginprostatecancer
AT vazquezelbas hemeoxygenase1intheforefrontofamultimolecularnetworkthatgovernscellcellcontactsandfilopodiainducedzipperinginprostatecancer
AT guerongeraldine hemeoxygenase1intheforefrontofamultimolecularnetworkthatgovernscellcellcontactsandfilopodiainducedzipperinginprostatecancer