Cargando…

BMAL1 Suppresses Proliferation, Migration, and Invasion of U87MG Cells by Downregulating Cyclin B1, Phospho-AKT, and Metalloproteinase-9

Several studies have shown that brain and muscle aryl hydrocarbon receptor nuclear translocator-like 1 (BMAL1), an important molecule for maintaining circadian rhythms, inhibits the growth and metastasis of tumor cells in several types of cancer, including lung, colon, and breast cancer. However, it...

Descripción completa

Detalles Bibliográficos
Autores principales: Gwon, Do hyeong, Lee, Woo-Yong, Shin, Nara, Kim, Song I, Jeong, Kuhee, Lee, Won-hyung, Kim, Dong Woon, Hong, Jinpyo, Lee, Sun Yeul
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7178273/
https://www.ncbi.nlm.nih.gov/pubmed/32231148
http://dx.doi.org/10.3390/ijms21072352
_version_ 1783525418197843968
author Gwon, Do hyeong
Lee, Woo-Yong
Shin, Nara
Kim, Song I
Jeong, Kuhee
Lee, Won-hyung
Kim, Dong Woon
Hong, Jinpyo
Lee, Sun Yeul
author_facet Gwon, Do hyeong
Lee, Woo-Yong
Shin, Nara
Kim, Song I
Jeong, Kuhee
Lee, Won-hyung
Kim, Dong Woon
Hong, Jinpyo
Lee, Sun Yeul
author_sort Gwon, Do hyeong
collection PubMed
description Several studies have shown that brain and muscle aryl hydrocarbon receptor nuclear translocator-like 1 (BMAL1), an important molecule for maintaining circadian rhythms, inhibits the growth and metastasis of tumor cells in several types of cancer, including lung, colon, and breast cancer. However, its role in glioblastoma has not yet been established. Here, we addressed the function of BMAL1 in U87MG glioblastoma cells with two approaches—loss and gain of function. In the loss of function experiments, cell proliferation in U87MG cells transfected with small interfering RNA (siRNA) targeting BMAL1 was increased by approximately 24% (small interfering (si)-NC 0.91 ± 0.00 vs. si-BMAL1 1.129 ± 0.08) via upregulation of cyclin B1. In addition, cell migration and invasion of BMAL1 siRNA-treated glioblastoma cells were elevated by approximately 20% (si-NC 51.00 ± 1.53 vs. si-BMAL161.33 ± 0.88) and 209% (si-NC 21.28 ± 1.37 vs. si-BMAL1 44.47 ± 3.48), respectively, through the accumulation of phosphorylated-AKT (p-AKT) and matrix metalloproteinase (MMP)-9. Gain of function experiments revealed that adenovirus-mediated ectopic expression of BMAL1 in U87MG cells resulted in a 19% (Adenovirus (Ad)-vector 0.94± 0.03 vs. Ad-BMAL1 0.76 ± 0.03) decrease in cell proliferation compared with the control via downregulation of cyclin B1 and increased early and late apoptosis due to changes in the levels of BCL2-associated X protein (BAX), B-cell lymphoma 2 (BCL-2), and cleaved caspase-3. Likewise, cell migration and invasion were attenuated by approximately 24% (Ad-vector 55.00 ± 0.00 vs. Ad-BMAL1 41.83 ± 2.90) and 49% (Ad-vector 70.01 ± 1.24 vs. Ad-BMAL1 35.55 ± 1.78), respectively, in BMAL1-overexpressing U87MG cells following downregulation of p-AKT and MMP-9. Taken together, our results suggest that BMAL1 acts as an anti-cancer gene by altering the proliferation, migration, and invasion of glioblastoma cells. Therefore, the BMAL1 gene could be a potential therapeutic target in the treatment of glioblastoma.
format Online
Article
Text
id pubmed-7178273
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-71782732020-04-28 BMAL1 Suppresses Proliferation, Migration, and Invasion of U87MG Cells by Downregulating Cyclin B1, Phospho-AKT, and Metalloproteinase-9 Gwon, Do hyeong Lee, Woo-Yong Shin, Nara Kim, Song I Jeong, Kuhee Lee, Won-hyung Kim, Dong Woon Hong, Jinpyo Lee, Sun Yeul Int J Mol Sci Article Several studies have shown that brain and muscle aryl hydrocarbon receptor nuclear translocator-like 1 (BMAL1), an important molecule for maintaining circadian rhythms, inhibits the growth and metastasis of tumor cells in several types of cancer, including lung, colon, and breast cancer. However, its role in glioblastoma has not yet been established. Here, we addressed the function of BMAL1 in U87MG glioblastoma cells with two approaches—loss and gain of function. In the loss of function experiments, cell proliferation in U87MG cells transfected with small interfering RNA (siRNA) targeting BMAL1 was increased by approximately 24% (small interfering (si)-NC 0.91 ± 0.00 vs. si-BMAL1 1.129 ± 0.08) via upregulation of cyclin B1. In addition, cell migration and invasion of BMAL1 siRNA-treated glioblastoma cells were elevated by approximately 20% (si-NC 51.00 ± 1.53 vs. si-BMAL161.33 ± 0.88) and 209% (si-NC 21.28 ± 1.37 vs. si-BMAL1 44.47 ± 3.48), respectively, through the accumulation of phosphorylated-AKT (p-AKT) and matrix metalloproteinase (MMP)-9. Gain of function experiments revealed that adenovirus-mediated ectopic expression of BMAL1 in U87MG cells resulted in a 19% (Adenovirus (Ad)-vector 0.94± 0.03 vs. Ad-BMAL1 0.76 ± 0.03) decrease in cell proliferation compared with the control via downregulation of cyclin B1 and increased early and late apoptosis due to changes in the levels of BCL2-associated X protein (BAX), B-cell lymphoma 2 (BCL-2), and cleaved caspase-3. Likewise, cell migration and invasion were attenuated by approximately 24% (Ad-vector 55.00 ± 0.00 vs. Ad-BMAL1 41.83 ± 2.90) and 49% (Ad-vector 70.01 ± 1.24 vs. Ad-BMAL1 35.55 ± 1.78), respectively, in BMAL1-overexpressing U87MG cells following downregulation of p-AKT and MMP-9. Taken together, our results suggest that BMAL1 acts as an anti-cancer gene by altering the proliferation, migration, and invasion of glioblastoma cells. Therefore, the BMAL1 gene could be a potential therapeutic target in the treatment of glioblastoma. MDPI 2020-03-28 /pmc/articles/PMC7178273/ /pubmed/32231148 http://dx.doi.org/10.3390/ijms21072352 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Gwon, Do hyeong
Lee, Woo-Yong
Shin, Nara
Kim, Song I
Jeong, Kuhee
Lee, Won-hyung
Kim, Dong Woon
Hong, Jinpyo
Lee, Sun Yeul
BMAL1 Suppresses Proliferation, Migration, and Invasion of U87MG Cells by Downregulating Cyclin B1, Phospho-AKT, and Metalloproteinase-9
title BMAL1 Suppresses Proliferation, Migration, and Invasion of U87MG Cells by Downregulating Cyclin B1, Phospho-AKT, and Metalloproteinase-9
title_full BMAL1 Suppresses Proliferation, Migration, and Invasion of U87MG Cells by Downregulating Cyclin B1, Phospho-AKT, and Metalloproteinase-9
title_fullStr BMAL1 Suppresses Proliferation, Migration, and Invasion of U87MG Cells by Downregulating Cyclin B1, Phospho-AKT, and Metalloproteinase-9
title_full_unstemmed BMAL1 Suppresses Proliferation, Migration, and Invasion of U87MG Cells by Downregulating Cyclin B1, Phospho-AKT, and Metalloproteinase-9
title_short BMAL1 Suppresses Proliferation, Migration, and Invasion of U87MG Cells by Downregulating Cyclin B1, Phospho-AKT, and Metalloproteinase-9
title_sort bmal1 suppresses proliferation, migration, and invasion of u87mg cells by downregulating cyclin b1, phospho-akt, and metalloproteinase-9
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7178273/
https://www.ncbi.nlm.nih.gov/pubmed/32231148
http://dx.doi.org/10.3390/ijms21072352
work_keys_str_mv AT gwondohyeong bmal1suppressesproliferationmigrationandinvasionofu87mgcellsbydownregulatingcyclinb1phosphoaktandmetalloproteinase9
AT leewooyong bmal1suppressesproliferationmigrationandinvasionofu87mgcellsbydownregulatingcyclinb1phosphoaktandmetalloproteinase9
AT shinnara bmal1suppressesproliferationmigrationandinvasionofu87mgcellsbydownregulatingcyclinb1phosphoaktandmetalloproteinase9
AT kimsongi bmal1suppressesproliferationmigrationandinvasionofu87mgcellsbydownregulatingcyclinb1phosphoaktandmetalloproteinase9
AT jeongkuhee bmal1suppressesproliferationmigrationandinvasionofu87mgcellsbydownregulatingcyclinb1phosphoaktandmetalloproteinase9
AT leewonhyung bmal1suppressesproliferationmigrationandinvasionofu87mgcellsbydownregulatingcyclinb1phosphoaktandmetalloproteinase9
AT kimdongwoon bmal1suppressesproliferationmigrationandinvasionofu87mgcellsbydownregulatingcyclinb1phosphoaktandmetalloproteinase9
AT hongjinpyo bmal1suppressesproliferationmigrationandinvasionofu87mgcellsbydownregulatingcyclinb1phosphoaktandmetalloproteinase9
AT leesunyeul bmal1suppressesproliferationmigrationandinvasionofu87mgcellsbydownregulatingcyclinb1phosphoaktandmetalloproteinase9