Cargando…

MicroRNA-7-5p Promotes Cisplatin Resistance of Cervical Cancer Cells and Modulation of Cellular Energy Homeostasis by Regulating the Expression of the PARP-1 and BCL2 Genes

BACKGROUND: Resistance to cisplatin results in recurrence or relapse of cervical cancer in women. An understanding of the mechanisms of cisplatin resistance will be important to improve the efficacy of cisplatin treatment. The aim of this study was to investigate the role of microRNA-7-5p (mir-7-5p)...

Descripción completa

Detalles Bibliográficos
Autores principales: Yang, Fengxia, Guo, Li, Cao, Yujing, Li, Shizhen, Li, Jianhua, Liu, Min
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Scientific Literature, Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6154311/
https://www.ncbi.nlm.nih.gov/pubmed/30219819
http://dx.doi.org/10.12659/MSM.910969
_version_ 1783357671250853888
author Yang, Fengxia
Guo, Li
Cao, Yujing
Li, Shizhen
Li, Jianhua
Liu, Min
author_facet Yang, Fengxia
Guo, Li
Cao, Yujing
Li, Shizhen
Li, Jianhua
Liu, Min
author_sort Yang, Fengxia
collection PubMed
description BACKGROUND: Resistance to cisplatin results in recurrence or relapse of cervical cancer in women. An understanding of the mechanisms of cisplatin resistance will be important to improve the efficacy of cisplatin treatment. The aim of this study was to investigate the role of microRNA-7-5p (mir-7-5p) in cisplatin-resistant cervical cancer cells in vitro. MATERIAL/METHODS: The expression levels of miR-7-5p were detected in cisplatin-resistant cervical cancer cells, HeLa, and SiHa cells (HPV16-positive), and in clinical tissue samples, using miR-7-5p inhibition and a luciferase reporter assay. Fifteen paired cervical cancer tissue samples and adjacent normal cervical tissues were obtained from 15 patients who underwent surgery for cervical cancer. Western blot and flow cytometry were used to investigate cell apoptosis. The expression of mir-7-5p was detected by quantitative real-time reverse transcription-polymerase chain reaction (qRT-PCR). RESULTS: The level of miR-7-5p was increased in cisplatin-resistant HeLa and SiHa cervical cancer cells. Increased expression of miR-7-5p inhibited DNA repair by modulating the expression of poly (ADP-ribose) polymerase 1 (PARP-1), reducing energy consumption, and promoting autophagy via suppression of the expression of Bcl-2. These findings supported that increasing energy generation and reducing energy consumption, resulted in miR-7-5p maintaining energy homeostasis during cisplatin treatment. CONCLUSIONS: The findings of this study showed that there was a protective role of miR-7-5p in cervical cancer cells treated with cisplatin and that miR-7-5p expression maintained energy homeostasis in cisplatin-resistant cervical cancer cells. However, miR-7-5p reduced energy consumption via inhibiting PARP-1 expression, and miR-7-5p increased energy generation by suppressing the expression of Bcl-2.
format Online
Article
Text
id pubmed-6154311
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher International Scientific Literature, Inc.
record_format MEDLINE/PubMed
spelling pubmed-61543112018-09-26 MicroRNA-7-5p Promotes Cisplatin Resistance of Cervical Cancer Cells and Modulation of Cellular Energy Homeostasis by Regulating the Expression of the PARP-1 and BCL2 Genes Yang, Fengxia Guo, Li Cao, Yujing Li, Shizhen Li, Jianhua Liu, Min Med Sci Monit Lab/In Vitro Research BACKGROUND: Resistance to cisplatin results in recurrence or relapse of cervical cancer in women. An understanding of the mechanisms of cisplatin resistance will be important to improve the efficacy of cisplatin treatment. The aim of this study was to investigate the role of microRNA-7-5p (mir-7-5p) in cisplatin-resistant cervical cancer cells in vitro. MATERIAL/METHODS: The expression levels of miR-7-5p were detected in cisplatin-resistant cervical cancer cells, HeLa, and SiHa cells (HPV16-positive), and in clinical tissue samples, using miR-7-5p inhibition and a luciferase reporter assay. Fifteen paired cervical cancer tissue samples and adjacent normal cervical tissues were obtained from 15 patients who underwent surgery for cervical cancer. Western blot and flow cytometry were used to investigate cell apoptosis. The expression of mir-7-5p was detected by quantitative real-time reverse transcription-polymerase chain reaction (qRT-PCR). RESULTS: The level of miR-7-5p was increased in cisplatin-resistant HeLa and SiHa cervical cancer cells. Increased expression of miR-7-5p inhibited DNA repair by modulating the expression of poly (ADP-ribose) polymerase 1 (PARP-1), reducing energy consumption, and promoting autophagy via suppression of the expression of Bcl-2. These findings supported that increasing energy generation and reducing energy consumption, resulted in miR-7-5p maintaining energy homeostasis during cisplatin treatment. CONCLUSIONS: The findings of this study showed that there was a protective role of miR-7-5p in cervical cancer cells treated with cisplatin and that miR-7-5p expression maintained energy homeostasis in cisplatin-resistant cervical cancer cells. However, miR-7-5p reduced energy consumption via inhibiting PARP-1 expression, and miR-7-5p increased energy generation by suppressing the expression of Bcl-2. International Scientific Literature, Inc. 2018-09-16 /pmc/articles/PMC6154311/ /pubmed/30219819 http://dx.doi.org/10.12659/MSM.910969 Text en © Med Sci Monit, 2018 This work is licensed under Creative Common Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0 (https://creativecommons.org/licenses/by-nc-nd/4.0/) )
spellingShingle Lab/In Vitro Research
Yang, Fengxia
Guo, Li
Cao, Yujing
Li, Shizhen
Li, Jianhua
Liu, Min
MicroRNA-7-5p Promotes Cisplatin Resistance of Cervical Cancer Cells and Modulation of Cellular Energy Homeostasis by Regulating the Expression of the PARP-1 and BCL2 Genes
title MicroRNA-7-5p Promotes Cisplatin Resistance of Cervical Cancer Cells and Modulation of Cellular Energy Homeostasis by Regulating the Expression of the PARP-1 and BCL2 Genes
title_full MicroRNA-7-5p Promotes Cisplatin Resistance of Cervical Cancer Cells and Modulation of Cellular Energy Homeostasis by Regulating the Expression of the PARP-1 and BCL2 Genes
title_fullStr MicroRNA-7-5p Promotes Cisplatin Resistance of Cervical Cancer Cells and Modulation of Cellular Energy Homeostasis by Regulating the Expression of the PARP-1 and BCL2 Genes
title_full_unstemmed MicroRNA-7-5p Promotes Cisplatin Resistance of Cervical Cancer Cells and Modulation of Cellular Energy Homeostasis by Regulating the Expression of the PARP-1 and BCL2 Genes
title_short MicroRNA-7-5p Promotes Cisplatin Resistance of Cervical Cancer Cells and Modulation of Cellular Energy Homeostasis by Regulating the Expression of the PARP-1 and BCL2 Genes
title_sort microrna-7-5p promotes cisplatin resistance of cervical cancer cells and modulation of cellular energy homeostasis by regulating the expression of the parp-1 and bcl2 genes
topic Lab/In Vitro Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6154311/
https://www.ncbi.nlm.nih.gov/pubmed/30219819
http://dx.doi.org/10.12659/MSM.910969
work_keys_str_mv AT yangfengxia microrna75ppromotescisplatinresistanceofcervicalcancercellsandmodulationofcellularenergyhomeostasisbyregulatingtheexpressionoftheparp1andbcl2genes
AT guoli microrna75ppromotescisplatinresistanceofcervicalcancercellsandmodulationofcellularenergyhomeostasisbyregulatingtheexpressionoftheparp1andbcl2genes
AT caoyujing microrna75ppromotescisplatinresistanceofcervicalcancercellsandmodulationofcellularenergyhomeostasisbyregulatingtheexpressionoftheparp1andbcl2genes
AT lishizhen microrna75ppromotescisplatinresistanceofcervicalcancercellsandmodulationofcellularenergyhomeostasisbyregulatingtheexpressionoftheparp1andbcl2genes
AT lijianhua microrna75ppromotescisplatinresistanceofcervicalcancercellsandmodulationofcellularenergyhomeostasisbyregulatingtheexpressionoftheparp1andbcl2genes
AT liumin microrna75ppromotescisplatinresistanceofcervicalcancercellsandmodulationofcellularenergyhomeostasisbyregulatingtheexpressionoftheparp1andbcl2genes