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miR-217 and CAGE form feedback loop and regulates the response to anti-cancer drugs through EGFR and HER2

MicroRNA array analysis revealed that miR-217 expression was decreased in anti-cancer drug-resistant Malme3M(R) cancer cells. CAGE, a cancer/testis antigen, was predicted as a target of miR-217. Luciferase activity and ChIP assays revealed a negative feedback relationship between CAGE and miR-217. m...

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Autores principales: Kim, Youngmi, Kim, Hyuna, Park, Deokbum, Han, Minho, Lee, Hansoo, Lee, Yun Sil, Choe, Jongseon, Kim, Young Myeong, Jeoung, Dooil
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4891121/
https://www.ncbi.nlm.nih.gov/pubmed/26863629
http://dx.doi.org/10.18632/oncotarget.7185
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author Kim, Youngmi
Kim, Hyuna
Park, Deokbum
Han, Minho
Lee, Hansoo
Lee, Yun Sil
Choe, Jongseon
Kim, Young Myeong
Jeoung, Dooil
author_facet Kim, Youngmi
Kim, Hyuna
Park, Deokbum
Han, Minho
Lee, Hansoo
Lee, Yun Sil
Choe, Jongseon
Kim, Young Myeong
Jeoung, Dooil
author_sort Kim, Youngmi
collection PubMed
description MicroRNA array analysis revealed that miR-217 expression was decreased in anti-cancer drug-resistant Malme3M(R) cancer cells. CAGE, a cancer/testis antigen, was predicted as a target of miR-217. Luciferase activity and ChIP assays revealed a negative feedback relationship between CAGE and miR-217. miR-217 and CAGE oppositely regulated the response to anti-cancer drugs such as taxol, gefitinib and trastuzumab, an inhibitor of HER2. miR-217 negatively regulated the tumorigenic, metastatic, angiogenic, migration and invasion potential of cancer cells. The xenograft of Malme3M(R) cells showed an increased expression of pEGFR(Y845). CAGE and miR-217 inhibitor regulated the expression of pEGFR(Y845). CAGE showed interactions with EGFR and HER2 and regulated the in vivo sensitivity to trastuzumab. The down-regulation of EGFR or HER2 enhanced the sensitivity to anti-cancer drugs. CAGE showed direct regulation of HER2 and was necessary for the interaction between EGFR and HER2 in Malme3M(R) cells. miR-217 inhibitor induced interactions of CAGE with EGFR and HER2 in Malme3M cells. The inhibition of EGFR by CAGE-binding GTGKT peptide enhanced the sensitivity to gefitinib and trastuzumab and prevented interactions of EGFR with CAGE and HER2. Our results show that miR-217-CAGE feedback loop serves as a target for overcoming resistance to various anti-cancer drugs, including EGFR and HER2 inhibitors.
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spelling pubmed-48911212016-06-23 miR-217 and CAGE form feedback loop and regulates the response to anti-cancer drugs through EGFR and HER2 Kim, Youngmi Kim, Hyuna Park, Deokbum Han, Minho Lee, Hansoo Lee, Yun Sil Choe, Jongseon Kim, Young Myeong Jeoung, Dooil Oncotarget Research Paper MicroRNA array analysis revealed that miR-217 expression was decreased in anti-cancer drug-resistant Malme3M(R) cancer cells. CAGE, a cancer/testis antigen, was predicted as a target of miR-217. Luciferase activity and ChIP assays revealed a negative feedback relationship between CAGE and miR-217. miR-217 and CAGE oppositely regulated the response to anti-cancer drugs such as taxol, gefitinib and trastuzumab, an inhibitor of HER2. miR-217 negatively regulated the tumorigenic, metastatic, angiogenic, migration and invasion potential of cancer cells. The xenograft of Malme3M(R) cells showed an increased expression of pEGFR(Y845). CAGE and miR-217 inhibitor regulated the expression of pEGFR(Y845). CAGE showed interactions with EGFR and HER2 and regulated the in vivo sensitivity to trastuzumab. The down-regulation of EGFR or HER2 enhanced the sensitivity to anti-cancer drugs. CAGE showed direct regulation of HER2 and was necessary for the interaction between EGFR and HER2 in Malme3M(R) cells. miR-217 inhibitor induced interactions of CAGE with EGFR and HER2 in Malme3M cells. The inhibition of EGFR by CAGE-binding GTGKT peptide enhanced the sensitivity to gefitinib and trastuzumab and prevented interactions of EGFR with CAGE and HER2. Our results show that miR-217-CAGE feedback loop serves as a target for overcoming resistance to various anti-cancer drugs, including EGFR and HER2 inhibitors. Impact Journals LLC 2016-02-04 /pmc/articles/PMC4891121/ /pubmed/26863629 http://dx.doi.org/10.18632/oncotarget.7185 Text en Copyright: © 2016 Kim et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Kim, Youngmi
Kim, Hyuna
Park, Deokbum
Han, Minho
Lee, Hansoo
Lee, Yun Sil
Choe, Jongseon
Kim, Young Myeong
Jeoung, Dooil
miR-217 and CAGE form feedback loop and regulates the response to anti-cancer drugs through EGFR and HER2
title miR-217 and CAGE form feedback loop and regulates the response to anti-cancer drugs through EGFR and HER2
title_full miR-217 and CAGE form feedback loop and regulates the response to anti-cancer drugs through EGFR and HER2
title_fullStr miR-217 and CAGE form feedback loop and regulates the response to anti-cancer drugs through EGFR and HER2
title_full_unstemmed miR-217 and CAGE form feedback loop and regulates the response to anti-cancer drugs through EGFR and HER2
title_short miR-217 and CAGE form feedback loop and regulates the response to anti-cancer drugs through EGFR and HER2
title_sort mir-217 and cage form feedback loop and regulates the response to anti-cancer drugs through egfr and her2
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4891121/
https://www.ncbi.nlm.nih.gov/pubmed/26863629
http://dx.doi.org/10.18632/oncotarget.7185
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