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miR-1269 Promotes Metastasis and Forms a Positive Feedback Loop with TGF-β

As patient survival drops precipitously from early-stage cancers to late-stage and metastatic cancers, microRNAs that promote relapse and metastasis can serve as prognostic and predictive markers as well as therapeutic targets for chemoprevention. Here we show that miR-1269a promotes colorectal canc...

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Autores principales: Bu, Pengcheng, Wang, Lihua, Chen, Kai-Yuan, Rakhilin, Nikolai, Sun, Jian, Closa, Adria, Tung, Kuei-Ling, King, Sarah, Varanko, Anastasia Kristine, Xu, Yitian, Chen, Joyce Huan, Zessin, Amelia S, Shealy, James, Cummings, Bethany, Hsu, David, Lipkin, Steven M., Moreno, Victor, Gümüş, Zeynep H., Shen, Xiling
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4399006/
https://www.ncbi.nlm.nih.gov/pubmed/25872451
http://dx.doi.org/10.1038/ncomms7879
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author Bu, Pengcheng
Wang, Lihua
Chen, Kai-Yuan
Rakhilin, Nikolai
Sun, Jian
Closa, Adria
Tung, Kuei-Ling
King, Sarah
Varanko, Anastasia Kristine
Xu, Yitian
Chen, Joyce Huan
Zessin, Amelia S
Shealy, James
Cummings, Bethany
Hsu, David
Lipkin, Steven M.
Moreno, Victor
Gümüş, Zeynep H.
Shen, Xiling
author_facet Bu, Pengcheng
Wang, Lihua
Chen, Kai-Yuan
Rakhilin, Nikolai
Sun, Jian
Closa, Adria
Tung, Kuei-Ling
King, Sarah
Varanko, Anastasia Kristine
Xu, Yitian
Chen, Joyce Huan
Zessin, Amelia S
Shealy, James
Cummings, Bethany
Hsu, David
Lipkin, Steven M.
Moreno, Victor
Gümüş, Zeynep H.
Shen, Xiling
author_sort Bu, Pengcheng
collection PubMed
description As patient survival drops precipitously from early-stage cancers to late-stage and metastatic cancers, microRNAs that promote relapse and metastasis can serve as prognostic and predictive markers as well as therapeutic targets for chemoprevention. Here we show that miR-1269a promotes colorectal cancer (CRC) metastasis and forms a positive feedback loop with TGF-β signaling. miR-1269a is upregulated in late-stage CRCs, and long-term monitoring of 100 stage II CRC patients revealed that miR-1269a expression in their surgically removed primary tumors is strongly associated with risk of CRC relapse and metastasis. Consistent with clinical observations, miR-1269a significantly increases the ability of CRC cells to invade and metastasize in vivo. TGF-β activates miR-1269 via Sox4, while miR-1269a enhances TGF-β signaling by targeting Smad7 and HOXD10, hence forming a positive feedback loop. Our findings suggest that miR-1269a is a potential marker to inform adjuvant chemotherapy decisions for CRC patients and a potential therapeutic target to deter metastasis.
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spelling pubmed-43990062015-10-15 miR-1269 Promotes Metastasis and Forms a Positive Feedback Loop with TGF-β Bu, Pengcheng Wang, Lihua Chen, Kai-Yuan Rakhilin, Nikolai Sun, Jian Closa, Adria Tung, Kuei-Ling King, Sarah Varanko, Anastasia Kristine Xu, Yitian Chen, Joyce Huan Zessin, Amelia S Shealy, James Cummings, Bethany Hsu, David Lipkin, Steven M. Moreno, Victor Gümüş, Zeynep H. Shen, Xiling Nat Commun Article As patient survival drops precipitously from early-stage cancers to late-stage and metastatic cancers, microRNAs that promote relapse and metastasis can serve as prognostic and predictive markers as well as therapeutic targets for chemoprevention. Here we show that miR-1269a promotes colorectal cancer (CRC) metastasis and forms a positive feedback loop with TGF-β signaling. miR-1269a is upregulated in late-stage CRCs, and long-term monitoring of 100 stage II CRC patients revealed that miR-1269a expression in their surgically removed primary tumors is strongly associated with risk of CRC relapse and metastasis. Consistent with clinical observations, miR-1269a significantly increases the ability of CRC cells to invade and metastasize in vivo. TGF-β activates miR-1269 via Sox4, while miR-1269a enhances TGF-β signaling by targeting Smad7 and HOXD10, hence forming a positive feedback loop. Our findings suggest that miR-1269a is a potential marker to inform adjuvant chemotherapy decisions for CRC patients and a potential therapeutic target to deter metastasis. 2015-04-15 /pmc/articles/PMC4399006/ /pubmed/25872451 http://dx.doi.org/10.1038/ncomms7879 Text en http://www.nature.com/authors/editorial_policies/license.html#terms Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Bu, Pengcheng
Wang, Lihua
Chen, Kai-Yuan
Rakhilin, Nikolai
Sun, Jian
Closa, Adria
Tung, Kuei-Ling
King, Sarah
Varanko, Anastasia Kristine
Xu, Yitian
Chen, Joyce Huan
Zessin, Amelia S
Shealy, James
Cummings, Bethany
Hsu, David
Lipkin, Steven M.
Moreno, Victor
Gümüş, Zeynep H.
Shen, Xiling
miR-1269 Promotes Metastasis and Forms a Positive Feedback Loop with TGF-β
title miR-1269 Promotes Metastasis and Forms a Positive Feedback Loop with TGF-β
title_full miR-1269 Promotes Metastasis and Forms a Positive Feedback Loop with TGF-β
title_fullStr miR-1269 Promotes Metastasis and Forms a Positive Feedback Loop with TGF-β
title_full_unstemmed miR-1269 Promotes Metastasis and Forms a Positive Feedback Loop with TGF-β
title_short miR-1269 Promotes Metastasis and Forms a Positive Feedback Loop with TGF-β
title_sort mir-1269 promotes metastasis and forms a positive feedback loop with tgf-β
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4399006/
https://www.ncbi.nlm.nih.gov/pubmed/25872451
http://dx.doi.org/10.1038/ncomms7879
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