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MiR-93 enhances angiogenesis and metastasis by targeting LATS2

Here we report that miR-93, a miRNA in the miR-106B~25 cluster, a paralog of the miR-17–92 cluster, was significantly upregulated in human breast carcinoma tissues. We stably expressed miR-93 in the MT-1 human breast carcinoma cell line and found that tumors formed by the miR-93 cells contained more...

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Autores principales: Fang, Ling, Du, William W., Yang, Weining, Rutnam, Zina Jeyapalan, Peng, Chun, Li, Haoran, O'Malley, Yunxia Q., Askeland, Ryan W., Sugg, Sonia, Liu, Mingyao, Mehta, Tanvi, Deng, Zhaoqun, Yang, Burton B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Landes Bioscience 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3552918/
https://www.ncbi.nlm.nih.gov/pubmed/23111389
http://dx.doi.org/10.4161/cc.22670
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author Fang, Ling
Du, William W.
Yang, Weining
Rutnam, Zina Jeyapalan
Peng, Chun
Li, Haoran
O'Malley, Yunxia Q.
Askeland, Ryan W.
Sugg, Sonia
Liu, Mingyao
Mehta, Tanvi
Deng, Zhaoqun
Yang, Burton B.
author_facet Fang, Ling
Du, William W.
Yang, Weining
Rutnam, Zina Jeyapalan
Peng, Chun
Li, Haoran
O'Malley, Yunxia Q.
Askeland, Ryan W.
Sugg, Sonia
Liu, Mingyao
Mehta, Tanvi
Deng, Zhaoqun
Yang, Burton B.
author_sort Fang, Ling
collection PubMed
description Here we report that miR-93, a miRNA in the miR-106B~25 cluster, a paralog of the miR-17–92 cluster, was significantly upregulated in human breast carcinoma tissues. We stably expressed miR-93 in the MT-1 human breast carcinoma cell line and found that tumors formed by the miR-93 cells contained more blood vessels than those formed by the control cells. Co-culture experiments indicated that the MT-1 cells displayed a high activity of adhesion with endothelial cells and could form larger and more tube-like structures with endothelial cells. Lung metastasis assays were performed in a mouse metastatic model, and it was found that expression of miR-93 promoted tumor cell metastasis to lung tissue. In cell culture, expression of miR-93 enhanced cell survival and invasion. We examined the potential target that mediated miR-93’s effects and found that the large tumor suppressor, homology 2 (LATS2) was a target of miR-93. Higher levels of LATS2 were associated with cell death in the tumor mass. Silencing LATS2 expression promoted cell survival, tube formation and invasion, while ectopic expression of LATS2 decreased cell survival and invasion. These findings demonstrated that miR-93 promoted tumor angiogenesis and metastasis by suppressing LATS2 expression. Our results suggest that the inhibition of miR-93 function may be a feasible approach to repress tumor metastasis.
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spelling pubmed-35529182013-05-03 MiR-93 enhances angiogenesis and metastasis by targeting LATS2 Fang, Ling Du, William W. Yang, Weining Rutnam, Zina Jeyapalan Peng, Chun Li, Haoran O'Malley, Yunxia Q. Askeland, Ryan W. Sugg, Sonia Liu, Mingyao Mehta, Tanvi Deng, Zhaoqun Yang, Burton B. Cell Cycle Report Here we report that miR-93, a miRNA in the miR-106B~25 cluster, a paralog of the miR-17–92 cluster, was significantly upregulated in human breast carcinoma tissues. We stably expressed miR-93 in the MT-1 human breast carcinoma cell line and found that tumors formed by the miR-93 cells contained more blood vessels than those formed by the control cells. Co-culture experiments indicated that the MT-1 cells displayed a high activity of adhesion with endothelial cells and could form larger and more tube-like structures with endothelial cells. Lung metastasis assays were performed in a mouse metastatic model, and it was found that expression of miR-93 promoted tumor cell metastasis to lung tissue. In cell culture, expression of miR-93 enhanced cell survival and invasion. We examined the potential target that mediated miR-93’s effects and found that the large tumor suppressor, homology 2 (LATS2) was a target of miR-93. Higher levels of LATS2 were associated with cell death in the tumor mass. Silencing LATS2 expression promoted cell survival, tube formation and invasion, while ectopic expression of LATS2 decreased cell survival and invasion. These findings demonstrated that miR-93 promoted tumor angiogenesis and metastasis by suppressing LATS2 expression. Our results suggest that the inhibition of miR-93 function may be a feasible approach to repress tumor metastasis. Landes Bioscience 2012-12-01 /pmc/articles/PMC3552918/ /pubmed/23111389 http://dx.doi.org/10.4161/cc.22670 Text en Copyright © 2012 Landes Bioscience http://creativecommons.org/licenses/by-nc/3.0/ This is an open-access article licensed under a Creative Commons Attribution-NonCommercial 3.0 Unported License. The article may be redistributed, reproduced, and reused for non-commercial purposes, provided the original source is properly cited.
spellingShingle Report
Fang, Ling
Du, William W.
Yang, Weining
Rutnam, Zina Jeyapalan
Peng, Chun
Li, Haoran
O'Malley, Yunxia Q.
Askeland, Ryan W.
Sugg, Sonia
Liu, Mingyao
Mehta, Tanvi
Deng, Zhaoqun
Yang, Burton B.
MiR-93 enhances angiogenesis and metastasis by targeting LATS2
title MiR-93 enhances angiogenesis and metastasis by targeting LATS2
title_full MiR-93 enhances angiogenesis and metastasis by targeting LATS2
title_fullStr MiR-93 enhances angiogenesis and metastasis by targeting LATS2
title_full_unstemmed MiR-93 enhances angiogenesis and metastasis by targeting LATS2
title_short MiR-93 enhances angiogenesis and metastasis by targeting LATS2
title_sort mir-93 enhances angiogenesis and metastasis by targeting lats2
topic Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3552918/
https://www.ncbi.nlm.nih.gov/pubmed/23111389
http://dx.doi.org/10.4161/cc.22670
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