miR182 activates the Ras–MEK–ERK pathway in human oral cavity squamous cell carcinoma by suppressing RASA1 and SPRED1

Jinhui Wang,1,* Wei Wang,2,* Jichen Li,2 Liji Wu,2 Mei Song,1 Qinggang Meng3 1Department of Clinical Laboratory, Harbin First Hospital, 2Department of Oral and Maxillofacial Surgery, The First Affiliated Hospital of Harbin Medical University, 3Department of Osteological Surgery, Harbin Fir...

Full description

Bibliographic Details
Main Authors: Wang JH, Wang W, Li JC, Wu LJ, Song M, Meng QG
Format: Article
Language:English
Published: Dove Medical Press 2017-02-01
Series:OncoTargets and Therapy
Subjects:
Online Access:https://www.dovepress.com/mir182-activates-the-rasndashmekndasherk-pathway-in-human-oral-cavity--peer-reviewed-article-OTT
id doaj-bdf37d3807f3431baa618cc9ce12e056
record_format Article
spelling doaj-bdf37d3807f3431baa618cc9ce12e0562020-11-24T22:45:36ZengDove Medical PressOncoTargets and Therapy1178-69302017-02-01Volume 1066767931171miR182 activates the Ras–MEK–ERK pathway in human oral cavity squamous cell carcinoma by suppressing RASA1 and SPRED1Wang JHWang WLi JCWu LJSong MMeng QGJinhui Wang,1,* Wei Wang,2,* Jichen Li,2 Liji Wu,2 Mei Song,1 Qinggang Meng3 1Department of Clinical Laboratory, Harbin First Hospital, 2Department of Oral and Maxillofacial Surgery, The First Affiliated Hospital of Harbin Medical University, 3Department of Osteological Surgery, Harbin First Hospital, Harbin, People’s Republic of China *These authors contributed equally to this work Purpose: The constitutive activation of the Ras–MEK–ERK signaling pathway in oral cavity squamous cell carcinoma (OSCC) has been found to be tightly controlled at multiple levels under physiological conditions. RASA1 and SPRED1 are two important negative regulators of this pathway, but the exact regulating mechanism remains unclear. In this study, we aimed to explore the potential regulating mechanisms involved in the Ras–MEK–ERK signaling pathway in OSCC. Materials and methods: MicroRNA (miRNA) expression was detected by quantitative reverse-transcription polymerase chain reaction. The protein levels of RASA1, SPRED1, and signaling proteins were detected by Western blot. Cell growth was determined using CCK-8 reagent, colony formation was stained by crystal violet, and cell invasion was tested using transwell chambers. Cell apoptosis and the cell cycle were then analyzed by flow cytometry. The binding of miR182 with RASA1 or SPRED1 was evaluated by luciferase reporter assays on a dual-luciferase reporter system. Results: The expression of miR182 was found to be upregulated significantly in malignant oral carcinoma tissues compared with the adjacent nonmalignant tissues, and was inversely correlated with protein levels of RASA1 and SPRED1. Overexpression of miR182 in OSCC cell lines sustained Ras–MEK–ERK signaling-pathway activation, and promoted cell proliferation, cell-cycle progression, colony formation, and invasion capacity, whereas miR182 downregulation alleviated these properties significantly in vitro. Furthermore, we demonstrated that miR182 exerted its oncogenic role in OSCC by directly targeting and suppressing RASA1 and SPRED1. Conclusion: Our results bring new insights into the important role of miR182 in the activation of the Ras–MEK–ERK signaling pathway, and suggest that miR182 may be used as a potential target for treatment of OSCC, prompting further investigation into miRNA antisense oligonucleotides for cancer therapy. Keywords: miR182, Ras–MEK–ERK, RASA1, SPRED1, OSCChttps://www.dovepress.com/mir182-activates-the-rasndashmekndasherk-pathway-in-human-oral-cavity--peer-reviewed-article-OTTmiR-182RAS-MEK-ERKRASA1SPRED1OSCC
collection DOAJ
language English
format Article
sources DOAJ
author Wang JH
Wang W
Li JC
Wu LJ
Song M
Meng QG
spellingShingle Wang JH
Wang W
Li JC
Wu LJ
Song M
Meng QG
miR182 activates the Ras–MEK–ERK pathway in human oral cavity squamous cell carcinoma by suppressing RASA1 and SPRED1
OncoTargets and Therapy
miR-182
RAS-MEK-ERK
RASA1
SPRED1
OSCC
author_facet Wang JH
Wang W
Li JC
Wu LJ
Song M
Meng QG
author_sort Wang JH
title miR182 activates the Ras–MEK–ERK pathway in human oral cavity squamous cell carcinoma by suppressing RASA1 and SPRED1
title_short miR182 activates the Ras–MEK–ERK pathway in human oral cavity squamous cell carcinoma by suppressing RASA1 and SPRED1
title_full miR182 activates the Ras–MEK–ERK pathway in human oral cavity squamous cell carcinoma by suppressing RASA1 and SPRED1
title_fullStr miR182 activates the Ras–MEK–ERK pathway in human oral cavity squamous cell carcinoma by suppressing RASA1 and SPRED1
title_full_unstemmed miR182 activates the Ras–MEK–ERK pathway in human oral cavity squamous cell carcinoma by suppressing RASA1 and SPRED1
title_sort mir182 activates the ras–mek–erk pathway in human oral cavity squamous cell carcinoma by suppressing rasa1 and spred1
publisher Dove Medical Press
series OncoTargets and Therapy
issn 1178-6930
publishDate 2017-02-01
description Jinhui Wang,1,* Wei Wang,2,* Jichen Li,2 Liji Wu,2 Mei Song,1 Qinggang Meng3 1Department of Clinical Laboratory, Harbin First Hospital, 2Department of Oral and Maxillofacial Surgery, The First Affiliated Hospital of Harbin Medical University, 3Department of Osteological Surgery, Harbin First Hospital, Harbin, People’s Republic of China *These authors contributed equally to this work Purpose: The constitutive activation of the Ras–MEK–ERK signaling pathway in oral cavity squamous cell carcinoma (OSCC) has been found to be tightly controlled at multiple levels under physiological conditions. RASA1 and SPRED1 are two important negative regulators of this pathway, but the exact regulating mechanism remains unclear. In this study, we aimed to explore the potential regulating mechanisms involved in the Ras–MEK–ERK signaling pathway in OSCC. Materials and methods: MicroRNA (miRNA) expression was detected by quantitative reverse-transcription polymerase chain reaction. The protein levels of RASA1, SPRED1, and signaling proteins were detected by Western blot. Cell growth was determined using CCK-8 reagent, colony formation was stained by crystal violet, and cell invasion was tested using transwell chambers. Cell apoptosis and the cell cycle were then analyzed by flow cytometry. The binding of miR182 with RASA1 or SPRED1 was evaluated by luciferase reporter assays on a dual-luciferase reporter system. Results: The expression of miR182 was found to be upregulated significantly in malignant oral carcinoma tissues compared with the adjacent nonmalignant tissues, and was inversely correlated with protein levels of RASA1 and SPRED1. Overexpression of miR182 in OSCC cell lines sustained Ras–MEK–ERK signaling-pathway activation, and promoted cell proliferation, cell-cycle progression, colony formation, and invasion capacity, whereas miR182 downregulation alleviated these properties significantly in vitro. Furthermore, we demonstrated that miR182 exerted its oncogenic role in OSCC by directly targeting and suppressing RASA1 and SPRED1. Conclusion: Our results bring new insights into the important role of miR182 in the activation of the Ras–MEK–ERK signaling pathway, and suggest that miR182 may be used as a potential target for treatment of OSCC, prompting further investigation into miRNA antisense oligonucleotides for cancer therapy. Keywords: miR182, Ras–MEK–ERK, RASA1, SPRED1, OSCC
topic miR-182
RAS-MEK-ERK
RASA1
SPRED1
OSCC
url https://www.dovepress.com/mir182-activates-the-rasndashmekndasherk-pathway-in-human-oral-cavity--peer-reviewed-article-OTT
work_keys_str_mv AT wangjh mir182activatestherasndashmekndasherkpathwayinhumanoralcavitysquamouscellcarcinomabysuppressingrasa1andspred1
AT wangw mir182activatestherasndashmekndasherkpathwayinhumanoralcavitysquamouscellcarcinomabysuppressingrasa1andspred1
AT lijc mir182activatestherasndashmekndasherkpathwayinhumanoralcavitysquamouscellcarcinomabysuppressingrasa1andspred1
AT wulj mir182activatestherasndashmekndasherkpathwayinhumanoralcavitysquamouscellcarcinomabysuppressingrasa1andspred1
AT songm mir182activatestherasndashmekndasherkpathwayinhumanoralcavitysquamouscellcarcinomabysuppressingrasa1andspred1
AT mengqg mir182activatestherasndashmekndasherkpathwayinhumanoralcavitysquamouscellcarcinomabysuppressingrasa1andspred1
_version_ 1725687737479069696