Cargando…

Rock1 & 2 Perform Overlapping and Unique Roles in Angiogenesis and Angiosarcoma Tumor Progression

The serine/threonine protein kinase paralogs ROCK1 & 2 have been implicated as essential modulators of angiogenesis; however their paralog-specific roles in endothelial function are unknown. shRNA knockdown of ROCK1 or 2 in endothelial cells resulted in a significant disruption of in vitro capil...

Descripción completa

Detalles Bibliográficos
Autores principales: Montalvo, J, Spencer, C, Hackathorn, A, Masterjohn, K, Perkins, A, Doty, C, Arumugam, A, Ongusaha, PP, Lakshmanaswamy, R, Liao, JK, Mitchell, DC, Bryan, BA
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Bentham Science Publishers 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3580831/
https://www.ncbi.nlm.nih.gov/pubmed/22934846
http://dx.doi.org/10.2174/1566524011307010205
_version_ 1782260337842585600
author Montalvo, J
Spencer, C
Hackathorn, A
Masterjohn, K
Perkins, A
Doty, C
Arumugam, A
Ongusaha, PP
Lakshmanaswamy, R
Liao, JK
Mitchell, DC
Bryan, BA
author_facet Montalvo, J
Spencer, C
Hackathorn, A
Masterjohn, K
Perkins, A
Doty, C
Arumugam, A
Ongusaha, PP
Lakshmanaswamy, R
Liao, JK
Mitchell, DC
Bryan, BA
author_sort Montalvo, J
collection PubMed
description The serine/threonine protein kinase paralogs ROCK1 & 2 have been implicated as essential modulators of angiogenesis; however their paralog-specific roles in endothelial function are unknown. shRNA knockdown of ROCK1 or 2 in endothelial cells resulted in a significant disruption of in vitro capillary network formation, cell polarization, and cell migration compared to cells harboring non-targeting control shRNA plasmids. Knockdowns led to alterations in cytoskeletal dynamics due to ROCK1 & 2-mediated reductions in actin isoform expression, and ROCK2-specific reduction in myosin phosphatase and cofilin phosphorylation. Knockdowns enhanced cell survival and led to ROCK1 & 2-mediated reduction in caspase 6 and 9 cleavage, and a ROCK2-specific reduction in caspase 3 cleavage. Microarray analysis of ROCK knockdown lines revealed overlapping and unique control of global transcription by the paralogs, and a reduction in the transcriptional regulation of just under 50% of VEGF responsive genes. Finally, paralog knockdown in xenograft angiosarcoma tumors resulted in a significant reduction in tumor formation. Our data reveals that ROCK1 & 2 exhibit overlapping and unique roles in normal and dysfunctional endothelial cells, that alterations in cytoskeletal dynamics are capable of overriding mitogen activated transcription, and that therapeutic targeting of ROCK signaling may have profound impacts for targeting angiogenesis.
format Online
Article
Text
id pubmed-3580831
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Bentham Science Publishers
record_format MEDLINE/PubMed
spelling pubmed-35808312013-03-04 Rock1 & 2 Perform Overlapping and Unique Roles in Angiogenesis and Angiosarcoma Tumor Progression Montalvo, J Spencer, C Hackathorn, A Masterjohn, K Perkins, A Doty, C Arumugam, A Ongusaha, PP Lakshmanaswamy, R Liao, JK Mitchell, DC Bryan, BA Curr Mol Med Article The serine/threonine protein kinase paralogs ROCK1 & 2 have been implicated as essential modulators of angiogenesis; however their paralog-specific roles in endothelial function are unknown. shRNA knockdown of ROCK1 or 2 in endothelial cells resulted in a significant disruption of in vitro capillary network formation, cell polarization, and cell migration compared to cells harboring non-targeting control shRNA plasmids. Knockdowns led to alterations in cytoskeletal dynamics due to ROCK1 & 2-mediated reductions in actin isoform expression, and ROCK2-specific reduction in myosin phosphatase and cofilin phosphorylation. Knockdowns enhanced cell survival and led to ROCK1 & 2-mediated reduction in caspase 6 and 9 cleavage, and a ROCK2-specific reduction in caspase 3 cleavage. Microarray analysis of ROCK knockdown lines revealed overlapping and unique control of global transcription by the paralogs, and a reduction in the transcriptional regulation of just under 50% of VEGF responsive genes. Finally, paralog knockdown in xenograft angiosarcoma tumors resulted in a significant reduction in tumor formation. Our data reveals that ROCK1 & 2 exhibit overlapping and unique roles in normal and dysfunctional endothelial cells, that alterations in cytoskeletal dynamics are capable of overriding mitogen activated transcription, and that therapeutic targeting of ROCK signaling may have profound impacts for targeting angiogenesis. Bentham Science Publishers 2013-01 2013-01 /pmc/articles/PMC3580831/ /pubmed/22934846 http://dx.doi.org/10.2174/1566524011307010205 Text en © 2013 Bentham Science Publishers http://creativecommons.org/licenses/by/2.5/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.5/), which permits unrestrictive use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Article
Montalvo, J
Spencer, C
Hackathorn, A
Masterjohn, K
Perkins, A
Doty, C
Arumugam, A
Ongusaha, PP
Lakshmanaswamy, R
Liao, JK
Mitchell, DC
Bryan, BA
Rock1 & 2 Perform Overlapping and Unique Roles in Angiogenesis and Angiosarcoma Tumor Progression
title Rock1 & 2 Perform Overlapping and Unique Roles in Angiogenesis and Angiosarcoma Tumor Progression
title_full Rock1 & 2 Perform Overlapping and Unique Roles in Angiogenesis and Angiosarcoma Tumor Progression
title_fullStr Rock1 & 2 Perform Overlapping and Unique Roles in Angiogenesis and Angiosarcoma Tumor Progression
title_full_unstemmed Rock1 & 2 Perform Overlapping and Unique Roles in Angiogenesis and Angiosarcoma Tumor Progression
title_short Rock1 & 2 Perform Overlapping and Unique Roles in Angiogenesis and Angiosarcoma Tumor Progression
title_sort rock1 & 2 perform overlapping and unique roles in angiogenesis and angiosarcoma tumor progression
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3580831/
https://www.ncbi.nlm.nih.gov/pubmed/22934846
http://dx.doi.org/10.2174/1566524011307010205
work_keys_str_mv AT montalvoj rock12performoverlappinganduniquerolesinangiogenesisandangiosarcomatumorprogression
AT spencerc rock12performoverlappinganduniquerolesinangiogenesisandangiosarcomatumorprogression
AT hackathorna rock12performoverlappinganduniquerolesinangiogenesisandangiosarcomatumorprogression
AT masterjohnk rock12performoverlappinganduniquerolesinangiogenesisandangiosarcomatumorprogression
AT perkinsa rock12performoverlappinganduniquerolesinangiogenesisandangiosarcomatumorprogression
AT dotyc rock12performoverlappinganduniquerolesinangiogenesisandangiosarcomatumorprogression
AT arumugama rock12performoverlappinganduniquerolesinangiogenesisandangiosarcomatumorprogression
AT ongusahapp rock12performoverlappinganduniquerolesinangiogenesisandangiosarcomatumorprogression
AT lakshmanaswamyr rock12performoverlappinganduniquerolesinangiogenesisandangiosarcomatumorprogression
AT liaojk rock12performoverlappinganduniquerolesinangiogenesisandangiosarcomatumorprogression
AT mitchelldc rock12performoverlappinganduniquerolesinangiogenesisandangiosarcomatumorprogression
AT bryanba rock12performoverlappinganduniquerolesinangiogenesisandangiosarcomatumorprogression