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DNA methylation‐regulated and tumor‐suppressive roles of miR‐487b in colorectal cancer via targeting MYC, SUZ12, and KRAS

Human colorectal cancer (CRC), characterized by its high morbidity and lethality, seriously threatens human health and lives. MicroRNA‐487b (miR‐487b) is currently reported to be aberrantly expressed in several tumors, but the detailed functions and underlying mechanisms of miR‐487b in CRC remain un...

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Autores principales: Chen, Xu, Lin, Zhi‐feng, Xi, Wen‐jin, Wang, Wei, Zhang, Dan, Yang, Fan, Li, Yu‐fang, Huo, Yi, Zhang, Tian‐ze, Jiang, Yi‐hong, Qin, Wei‐wei, Yang, An‐gang, Wang, Tao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6488202/
https://www.ncbi.nlm.nih.gov/pubmed/30791232
http://dx.doi.org/10.1002/cam4.2032
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author Chen, Xu
Lin, Zhi‐feng
Xi, Wen‐jin
Wang, Wei
Zhang, Dan
Yang, Fan
Li, Yu‐fang
Huo, Yi
Zhang, Tian‐ze
Jiang, Yi‐hong
Qin, Wei‐wei
Yang, An‐gang
Wang, Tao
author_facet Chen, Xu
Lin, Zhi‐feng
Xi, Wen‐jin
Wang, Wei
Zhang, Dan
Yang, Fan
Li, Yu‐fang
Huo, Yi
Zhang, Tian‐ze
Jiang, Yi‐hong
Qin, Wei‐wei
Yang, An‐gang
Wang, Tao
author_sort Chen, Xu
collection PubMed
description Human colorectal cancer (CRC), characterized by its high morbidity and lethality, seriously threatens human health and lives. MicroRNA‐487b (miR‐487b) is currently reported to be aberrantly expressed in several tumors, but the detailed functions and underlying mechanisms of miR‐487b in CRC remain unclear. Here, we found that miR‐487b is downregulated in CRC cell lines and is markedly decreased in tumor specimens derived from CRC patients. MiR‐487b inhibits cell proliferation, migration and invasion and promotes the apoptosis of CRC cells in vitro. Statistical analysis of clinical samples indicates that miR‐487b may serve as a biomarker for early CRC diagnosis. Inverse correlations between the expression levels of MYC, SUZ12, and KRAS and that of miR‐487b exist in vitro and in CRC patient tissue specimens. Further experiments demonstrated the regulatory effects of miR‐487b on MYC, SUZ12, and KRAS, and the disruption of these genes partially restores the miR‐487b inhibitor‐induced phenotype. Additionally, miR‐487b promoter region is in a DNA hypermethylated condition and the DNA methyltransferase inhibitor 5‐aza‐2’‐deoxycytidine (5‐Aza) increases the levels of miR‐487b but suppresses the expression of MYC, SUZ12, and KRAS in a time‐ and concentration‐dependent manner in CRC cells. Collectively, miR‐487b is regulated by DNA methylation and it functions as a tumor suppressor in CRC mainly through targeting MYC, SUZ12, and KRAS. Our study provides insight into the regulatory network in CRC cells, offering a new target for treating CRC patients.
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spelling pubmed-64882022019-05-23 DNA methylation‐regulated and tumor‐suppressive roles of miR‐487b in colorectal cancer via targeting MYC, SUZ12, and KRAS Chen, Xu Lin, Zhi‐feng Xi, Wen‐jin Wang, Wei Zhang, Dan Yang, Fan Li, Yu‐fang Huo, Yi Zhang, Tian‐ze Jiang, Yi‐hong Qin, Wei‐wei Yang, An‐gang Wang, Tao Cancer Med Cancer Biology Human colorectal cancer (CRC), characterized by its high morbidity and lethality, seriously threatens human health and lives. MicroRNA‐487b (miR‐487b) is currently reported to be aberrantly expressed in several tumors, but the detailed functions and underlying mechanisms of miR‐487b in CRC remain unclear. Here, we found that miR‐487b is downregulated in CRC cell lines and is markedly decreased in tumor specimens derived from CRC patients. MiR‐487b inhibits cell proliferation, migration and invasion and promotes the apoptosis of CRC cells in vitro. Statistical analysis of clinical samples indicates that miR‐487b may serve as a biomarker for early CRC diagnosis. Inverse correlations between the expression levels of MYC, SUZ12, and KRAS and that of miR‐487b exist in vitro and in CRC patient tissue specimens. Further experiments demonstrated the regulatory effects of miR‐487b on MYC, SUZ12, and KRAS, and the disruption of these genes partially restores the miR‐487b inhibitor‐induced phenotype. Additionally, miR‐487b promoter region is in a DNA hypermethylated condition and the DNA methyltransferase inhibitor 5‐aza‐2’‐deoxycytidine (5‐Aza) increases the levels of miR‐487b but suppresses the expression of MYC, SUZ12, and KRAS in a time‐ and concentration‐dependent manner in CRC cells. Collectively, miR‐487b is regulated by DNA methylation and it functions as a tumor suppressor in CRC mainly through targeting MYC, SUZ12, and KRAS. Our study provides insight into the regulatory network in CRC cells, offering a new target for treating CRC patients. John Wiley and Sons Inc. 2019-02-21 /pmc/articles/PMC6488202/ /pubmed/30791232 http://dx.doi.org/10.1002/cam4.2032 Text en © 2019 The Authors. Cancer Medicine published by John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Cancer Biology
Chen, Xu
Lin, Zhi‐feng
Xi, Wen‐jin
Wang, Wei
Zhang, Dan
Yang, Fan
Li, Yu‐fang
Huo, Yi
Zhang, Tian‐ze
Jiang, Yi‐hong
Qin, Wei‐wei
Yang, An‐gang
Wang, Tao
DNA methylation‐regulated and tumor‐suppressive roles of miR‐487b in colorectal cancer via targeting MYC, SUZ12, and KRAS
title DNA methylation‐regulated and tumor‐suppressive roles of miR‐487b in colorectal cancer via targeting MYC, SUZ12, and KRAS
title_full DNA methylation‐regulated and tumor‐suppressive roles of miR‐487b in colorectal cancer via targeting MYC, SUZ12, and KRAS
title_fullStr DNA methylation‐regulated and tumor‐suppressive roles of miR‐487b in colorectal cancer via targeting MYC, SUZ12, and KRAS
title_full_unstemmed DNA methylation‐regulated and tumor‐suppressive roles of miR‐487b in colorectal cancer via targeting MYC, SUZ12, and KRAS
title_short DNA methylation‐regulated and tumor‐suppressive roles of miR‐487b in colorectal cancer via targeting MYC, SUZ12, and KRAS
title_sort dna methylation‐regulated and tumor‐suppressive roles of mir‐487b in colorectal cancer via targeting myc, suz12, and kras
topic Cancer Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6488202/
https://www.ncbi.nlm.nih.gov/pubmed/30791232
http://dx.doi.org/10.1002/cam4.2032
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