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Knockdown of SETDB1 inhibits breast cancer progression by miR-381-3p-related regulation

BACKGROUND: SET domain bifurcated 1 (SETDB1) has been widely considered as an oncogene playing a critical role in many human cancers, including breast cancer. Nevertheless, the molecular mechanism by which SETDB1 regulates breast cancer tumorigenesis is still unknown. METHODS: qRT-PCR assay or weste...

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Autores principales: Wu, Milu, Fan, Baohua, Guo, Qijing, Li, Yan, Chen, Rong, Lv, Nannan, Diao, Yinzhuo, Luo, Yushuang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6180515/
https://www.ncbi.nlm.nih.gov/pubmed/30309377
http://dx.doi.org/10.1186/s40659-018-0189-0
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author Wu, Milu
Fan, Baohua
Guo, Qijing
Li, Yan
Chen, Rong
Lv, Nannan
Diao, Yinzhuo
Luo, Yushuang
author_facet Wu, Milu
Fan, Baohua
Guo, Qijing
Li, Yan
Chen, Rong
Lv, Nannan
Diao, Yinzhuo
Luo, Yushuang
author_sort Wu, Milu
collection PubMed
description BACKGROUND: SET domain bifurcated 1 (SETDB1) has been widely considered as an oncogene playing a critical role in many human cancers, including breast cancer. Nevertheless, the molecular mechanism by which SETDB1 regulates breast cancer tumorigenesis is still unknown. METHODS: qRT-PCR assay or western blot analysis was performed to assess the expression level of SETDB1 mRNA or protein, respectively. siSETDB1, pCMV6-XL5-SETDB1, miR-381-3p mimic, or miR-381-3p inhibitor was transfected into cells to regulate the expression of SETDB1 or miR-381-3p. MiRNA directly interacted with SETDB1 was verified by luciferase reporter assay and RNA immunoprecipitation. CCK-8 assay, colony formation assay, flow cytometric analysis, and transwell assay were used to detect the abilities of cell proliferation, cell cycle progression and migration, respectively. Animal model of xenograft tumor was used to observe the regulatory effect of SETDB1 on tumor growth in vivo. RESULTS: We verified that SETDB1 mRNA level was upregulated in breast cancer tissues and cell lines, and SETDB1 depletion led to a suppression of cell proliferation, cell cycle progression and migration in vitro, as well as tumor growth in vivo. SETDB1 was verified to be a target of miR-381-3p. Moreover, miR-381-3p overexpression suppressed cell proliferation, cell cycle progression and migration, whereas SETDB1 abated miR-381-3p-mediated regulatory function on breast cancer cells. CONCLUSIONS: This study revealed that SETDB1 knockdown might suppress breast cancer progression at least partly by miR-381-3p-related regulation, providing a novel prospect in breast cancer therapy.
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spelling pubmed-61805152018-10-18 Knockdown of SETDB1 inhibits breast cancer progression by miR-381-3p-related regulation Wu, Milu Fan, Baohua Guo, Qijing Li, Yan Chen, Rong Lv, Nannan Diao, Yinzhuo Luo, Yushuang Biol Res Research Article BACKGROUND: SET domain bifurcated 1 (SETDB1) has been widely considered as an oncogene playing a critical role in many human cancers, including breast cancer. Nevertheless, the molecular mechanism by which SETDB1 regulates breast cancer tumorigenesis is still unknown. METHODS: qRT-PCR assay or western blot analysis was performed to assess the expression level of SETDB1 mRNA or protein, respectively. siSETDB1, pCMV6-XL5-SETDB1, miR-381-3p mimic, or miR-381-3p inhibitor was transfected into cells to regulate the expression of SETDB1 or miR-381-3p. MiRNA directly interacted with SETDB1 was verified by luciferase reporter assay and RNA immunoprecipitation. CCK-8 assay, colony formation assay, flow cytometric analysis, and transwell assay were used to detect the abilities of cell proliferation, cell cycle progression and migration, respectively. Animal model of xenograft tumor was used to observe the regulatory effect of SETDB1 on tumor growth in vivo. RESULTS: We verified that SETDB1 mRNA level was upregulated in breast cancer tissues and cell lines, and SETDB1 depletion led to a suppression of cell proliferation, cell cycle progression and migration in vitro, as well as tumor growth in vivo. SETDB1 was verified to be a target of miR-381-3p. Moreover, miR-381-3p overexpression suppressed cell proliferation, cell cycle progression and migration, whereas SETDB1 abated miR-381-3p-mediated regulatory function on breast cancer cells. CONCLUSIONS: This study revealed that SETDB1 knockdown might suppress breast cancer progression at least partly by miR-381-3p-related regulation, providing a novel prospect in breast cancer therapy. BioMed Central 2018-10-11 /pmc/articles/PMC6180515/ /pubmed/30309377 http://dx.doi.org/10.1186/s40659-018-0189-0 Text en © The Author(s) 2018 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research Article
Wu, Milu
Fan, Baohua
Guo, Qijing
Li, Yan
Chen, Rong
Lv, Nannan
Diao, Yinzhuo
Luo, Yushuang
Knockdown of SETDB1 inhibits breast cancer progression by miR-381-3p-related regulation
title Knockdown of SETDB1 inhibits breast cancer progression by miR-381-3p-related regulation
title_full Knockdown of SETDB1 inhibits breast cancer progression by miR-381-3p-related regulation
title_fullStr Knockdown of SETDB1 inhibits breast cancer progression by miR-381-3p-related regulation
title_full_unstemmed Knockdown of SETDB1 inhibits breast cancer progression by miR-381-3p-related regulation
title_short Knockdown of SETDB1 inhibits breast cancer progression by miR-381-3p-related regulation
title_sort knockdown of setdb1 inhibits breast cancer progression by mir-381-3p-related regulation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6180515/
https://www.ncbi.nlm.nih.gov/pubmed/30309377
http://dx.doi.org/10.1186/s40659-018-0189-0
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