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Control of Angiogenesis via a VHL/miR-212/132 Axis

A common feature of tumorigenesis is the upregulation of angiogenesis pathways in order to supply nutrients via the blood for the growing tumor. Understanding how cells promote angiogenesis and how to control these processes pharmaceutically are of great clinical interest. Clear cell renal cell carc...

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Autores principales: Lei, Zhiyong, Klasson, Timothy D., Brandt, Maarten M., van de Hoek, Glenn, Logister, Ive, Cheng, Caroline, Doevendans, Pieter A., Sluijter, Joost P. G., Giles, Rachel H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7226144/
https://www.ncbi.nlm.nih.gov/pubmed/32325871
http://dx.doi.org/10.3390/cells9041017
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author Lei, Zhiyong
Klasson, Timothy D.
Brandt, Maarten M.
van de Hoek, Glenn
Logister, Ive
Cheng, Caroline
Doevendans, Pieter A.
Sluijter, Joost P. G.
Giles, Rachel H.
author_facet Lei, Zhiyong
Klasson, Timothy D.
Brandt, Maarten M.
van de Hoek, Glenn
Logister, Ive
Cheng, Caroline
Doevendans, Pieter A.
Sluijter, Joost P. G.
Giles, Rachel H.
author_sort Lei, Zhiyong
collection PubMed
description A common feature of tumorigenesis is the upregulation of angiogenesis pathways in order to supply nutrients via the blood for the growing tumor. Understanding how cells promote angiogenesis and how to control these processes pharmaceutically are of great clinical interest. Clear cell renal cell carcinoma (ccRCC) is the most common form of sporadic and inherited kidney cancer which is associated with excess neovascularization. ccRCC is highly associated with biallelic mutations in the von Hippel–Lindau (VHL) tumor suppressor gene. Although upregulation of the miR-212/132 family and disturbed VHL signaling have both been linked with angiogenesis, no evidence of a possible connection between the two has yet been made. We show that miRNA-212/132 levels are increased after loss of functional pVHL, the protein product of the VHL gene, in vivo and in vitro. Furthermore, we show that blocking miRNA-212/132 with anti-miRs can significantly alleviate the excessive vascular branching phenotype characteristic of vhl(−/−) mutant zebrafish. Moreover, using human umbilical vascular endothelial cells (HUVECs) and an endothelial cell/pericyte coculture system, we observed that VHL knockdown promotes endothelial cells neovascularization capacity in vitro, an effect which can be inhibited by anti-miR-212/132 treatment. Taken together, our results demonstrate an important role for miRNA-212/132 in angiogenesis induced by loss of VHL. Intriguingly, this also presents a possibility for the pharmaceutical manipulation of angiogenesis by modulating levels of MiR212/132.
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spelling pubmed-72261442020-05-18 Control of Angiogenesis via a VHL/miR-212/132 Axis Lei, Zhiyong Klasson, Timothy D. Brandt, Maarten M. van de Hoek, Glenn Logister, Ive Cheng, Caroline Doevendans, Pieter A. Sluijter, Joost P. G. Giles, Rachel H. Cells Article A common feature of tumorigenesis is the upregulation of angiogenesis pathways in order to supply nutrients via the blood for the growing tumor. Understanding how cells promote angiogenesis and how to control these processes pharmaceutically are of great clinical interest. Clear cell renal cell carcinoma (ccRCC) is the most common form of sporadic and inherited kidney cancer which is associated with excess neovascularization. ccRCC is highly associated with biallelic mutations in the von Hippel–Lindau (VHL) tumor suppressor gene. Although upregulation of the miR-212/132 family and disturbed VHL signaling have both been linked with angiogenesis, no evidence of a possible connection between the two has yet been made. We show that miRNA-212/132 levels are increased after loss of functional pVHL, the protein product of the VHL gene, in vivo and in vitro. Furthermore, we show that blocking miRNA-212/132 with anti-miRs can significantly alleviate the excessive vascular branching phenotype characteristic of vhl(−/−) mutant zebrafish. Moreover, using human umbilical vascular endothelial cells (HUVECs) and an endothelial cell/pericyte coculture system, we observed that VHL knockdown promotes endothelial cells neovascularization capacity in vitro, an effect which can be inhibited by anti-miR-212/132 treatment. Taken together, our results demonstrate an important role for miRNA-212/132 in angiogenesis induced by loss of VHL. Intriguingly, this also presents a possibility for the pharmaceutical manipulation of angiogenesis by modulating levels of MiR212/132. MDPI 2020-04-19 /pmc/articles/PMC7226144/ /pubmed/32325871 http://dx.doi.org/10.3390/cells9041017 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
Lei, Zhiyong
Klasson, Timothy D.
Brandt, Maarten M.
van de Hoek, Glenn
Logister, Ive
Cheng, Caroline
Doevendans, Pieter A.
Sluijter, Joost P. G.
Giles, Rachel H.
Control of Angiogenesis via a VHL/miR-212/132 Axis
title Control of Angiogenesis via a VHL/miR-212/132 Axis
title_full Control of Angiogenesis via a VHL/miR-212/132 Axis
title_fullStr Control of Angiogenesis via a VHL/miR-212/132 Axis
title_full_unstemmed Control of Angiogenesis via a VHL/miR-212/132 Axis
title_short Control of Angiogenesis via a VHL/miR-212/132 Axis
title_sort control of angiogenesis via a vhl/mir-212/132 axis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7226144/
https://www.ncbi.nlm.nih.gov/pubmed/32325871
http://dx.doi.org/10.3390/cells9041017
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