Cargando…

The NF-κB/miR-488/ERBB2 axis modulates pancreatic cancer cell malignancy and tumor growth through cell cycle signaling

Pancreatic cancer is one of the malignancies having the poorest prognosis due to late diagnoses and lack of efficient treatment regimens. The identification of potential miRNA-targeted gene axes could act as targets for developing novel treatment strategies. Herein, it was assessed that miR-488 expr...

Descripción completa

Detalles Bibliográficos
Autores principales: Han, Duo, Zhu, Shaihong, Li, Xia, Li, Zhiqiang, Huang, Hui, Gao, Wenzhe, Liu, Yunfei, Zhu, Hongwei, Yu, Xiao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8966990/
https://www.ncbi.nlm.nih.gov/pubmed/35343383
http://dx.doi.org/10.1080/15384047.2022.2054257
_version_ 1784678741366013952
author Han, Duo
Zhu, Shaihong
Li, Xia
Li, Zhiqiang
Huang, Hui
Gao, Wenzhe
Liu, Yunfei
Zhu, Hongwei
Yu, Xiao
author_facet Han, Duo
Zhu, Shaihong
Li, Xia
Li, Zhiqiang
Huang, Hui
Gao, Wenzhe
Liu, Yunfei
Zhu, Hongwei
Yu, Xiao
author_sort Han, Duo
collection PubMed
description Pancreatic cancer is one of the malignancies having the poorest prognosis due to late diagnoses and lack of efficient treatment regimens. The identification of potential miRNA-targeted gene axes could act as targets for developing novel treatment strategies. Herein, it was assessed that miR-488 expression was markedly downregulated within pancreatic carcinoma. Higher expression of miR-488 was shown to be linked to better prognosis rates of pancreatic carcinoma as per online data. Within two pancreatic tumor cells, MIA PaCa-2 and PANC-1, miR-488 overexpression significantly suppressed malignant cytological behavior by inhibiting cell viability, enhancing cell apoptosis, and inducing cell cycle G2/M-phase arrest. Moreover, miR-488 overexpression also decreased the protein levels of cell cycle regulators, including cyclin A, cyclin B, CDK1, and CDK2. miR-488 directly targets ERBB2 (receptor tyrosine-protein kinase2) to suppress the expression of ERBB2 by targeting its 3ʹUTR. ERBB2 knockdown in MIA PaCa-2 and PANC-1 cell lines suppressed, but miR-488 inhibition enhanced the cancer cell biological malignant behavior; the effects of miR-488 inhibition on pancreatic cancer cells were significantly reversed by ERBB2 knockdown. NF-κB suppressed the expression of miR-488 transcriptionally via targeting its promoter region, consequentially repressing the tumor-suppressive effects of miR-488 upon pancreatic tumor cells. Thus, an NF-κB/miR-488/ERBB2 axis modulating pancreatic cancer cell malignancy and tumor growth through cell cycle signaling was conclusively demonstrated.
format Online
Article
Text
id pubmed-8966990
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Taylor & Francis
record_format MEDLINE/PubMed
spelling pubmed-89669902022-03-31 The NF-κB/miR-488/ERBB2 axis modulates pancreatic cancer cell malignancy and tumor growth through cell cycle signaling Han, Duo Zhu, Shaihong Li, Xia Li, Zhiqiang Huang, Hui Gao, Wenzhe Liu, Yunfei Zhu, Hongwei Yu, Xiao Cancer Biol Ther Research Paper Pancreatic cancer is one of the malignancies having the poorest prognosis due to late diagnoses and lack of efficient treatment regimens. The identification of potential miRNA-targeted gene axes could act as targets for developing novel treatment strategies. Herein, it was assessed that miR-488 expression was markedly downregulated within pancreatic carcinoma. Higher expression of miR-488 was shown to be linked to better prognosis rates of pancreatic carcinoma as per online data. Within two pancreatic tumor cells, MIA PaCa-2 and PANC-1, miR-488 overexpression significantly suppressed malignant cytological behavior by inhibiting cell viability, enhancing cell apoptosis, and inducing cell cycle G2/M-phase arrest. Moreover, miR-488 overexpression also decreased the protein levels of cell cycle regulators, including cyclin A, cyclin B, CDK1, and CDK2. miR-488 directly targets ERBB2 (receptor tyrosine-protein kinase2) to suppress the expression of ERBB2 by targeting its 3ʹUTR. ERBB2 knockdown in MIA PaCa-2 and PANC-1 cell lines suppressed, but miR-488 inhibition enhanced the cancer cell biological malignant behavior; the effects of miR-488 inhibition on pancreatic cancer cells were significantly reversed by ERBB2 knockdown. NF-κB suppressed the expression of miR-488 transcriptionally via targeting its promoter region, consequentially repressing the tumor-suppressive effects of miR-488 upon pancreatic tumor cells. Thus, an NF-κB/miR-488/ERBB2 axis modulating pancreatic cancer cell malignancy and tumor growth through cell cycle signaling was conclusively demonstrated. Taylor & Francis 2022-03-28 /pmc/articles/PMC8966990/ /pubmed/35343383 http://dx.doi.org/10.1080/15384047.2022.2054257 Text en © 2022 The Author(s). Published with license by Taylor & Francis Group, LLC. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Paper
Han, Duo
Zhu, Shaihong
Li, Xia
Li, Zhiqiang
Huang, Hui
Gao, Wenzhe
Liu, Yunfei
Zhu, Hongwei
Yu, Xiao
The NF-κB/miR-488/ERBB2 axis modulates pancreatic cancer cell malignancy and tumor growth through cell cycle signaling
title The NF-κB/miR-488/ERBB2 axis modulates pancreatic cancer cell malignancy and tumor growth through cell cycle signaling
title_full The NF-κB/miR-488/ERBB2 axis modulates pancreatic cancer cell malignancy and tumor growth through cell cycle signaling
title_fullStr The NF-κB/miR-488/ERBB2 axis modulates pancreatic cancer cell malignancy and tumor growth through cell cycle signaling
title_full_unstemmed The NF-κB/miR-488/ERBB2 axis modulates pancreatic cancer cell malignancy and tumor growth through cell cycle signaling
title_short The NF-κB/miR-488/ERBB2 axis modulates pancreatic cancer cell malignancy and tumor growth through cell cycle signaling
title_sort nf-κb/mir-488/erbb2 axis modulates pancreatic cancer cell malignancy and tumor growth through cell cycle signaling
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8966990/
https://www.ncbi.nlm.nih.gov/pubmed/35343383
http://dx.doi.org/10.1080/15384047.2022.2054257
work_keys_str_mv AT handuo thenfkbmir488erbb2axismodulatespancreaticcancercellmalignancyandtumorgrowththroughcellcyclesignaling
AT zhushaihong thenfkbmir488erbb2axismodulatespancreaticcancercellmalignancyandtumorgrowththroughcellcyclesignaling
AT lixia thenfkbmir488erbb2axismodulatespancreaticcancercellmalignancyandtumorgrowththroughcellcyclesignaling
AT lizhiqiang thenfkbmir488erbb2axismodulatespancreaticcancercellmalignancyandtumorgrowththroughcellcyclesignaling
AT huanghui thenfkbmir488erbb2axismodulatespancreaticcancercellmalignancyandtumorgrowththroughcellcyclesignaling
AT gaowenzhe thenfkbmir488erbb2axismodulatespancreaticcancercellmalignancyandtumorgrowththroughcellcyclesignaling
AT liuyunfei thenfkbmir488erbb2axismodulatespancreaticcancercellmalignancyandtumorgrowththroughcellcyclesignaling
AT zhuhongwei thenfkbmir488erbb2axismodulatespancreaticcancercellmalignancyandtumorgrowththroughcellcyclesignaling
AT yuxiao thenfkbmir488erbb2axismodulatespancreaticcancercellmalignancyandtumorgrowththroughcellcyclesignaling
AT handuo nfkbmir488erbb2axismodulatespancreaticcancercellmalignancyandtumorgrowththroughcellcyclesignaling
AT zhushaihong nfkbmir488erbb2axismodulatespancreaticcancercellmalignancyandtumorgrowththroughcellcyclesignaling
AT lixia nfkbmir488erbb2axismodulatespancreaticcancercellmalignancyandtumorgrowththroughcellcyclesignaling
AT lizhiqiang nfkbmir488erbb2axismodulatespancreaticcancercellmalignancyandtumorgrowththroughcellcyclesignaling
AT huanghui nfkbmir488erbb2axismodulatespancreaticcancercellmalignancyandtumorgrowththroughcellcyclesignaling
AT gaowenzhe nfkbmir488erbb2axismodulatespancreaticcancercellmalignancyandtumorgrowththroughcellcyclesignaling
AT liuyunfei nfkbmir488erbb2axismodulatespancreaticcancercellmalignancyandtumorgrowththroughcellcyclesignaling
AT zhuhongwei nfkbmir488erbb2axismodulatespancreaticcancercellmalignancyandtumorgrowththroughcellcyclesignaling
AT yuxiao nfkbmir488erbb2axismodulatespancreaticcancercellmalignancyandtumorgrowththroughcellcyclesignaling