Disrupting SOD1 activity inhibits cell growth and enhances lipid accumulation in nasopharyngeal carcinoma

Abstract Background SOD1 is an abundant enzyme that has been studied as a regulator of the antioxidant defence system, and this enzyme is well known for catalyzing the dismutation of superoxide into hydrogen peroxide. However the SOD1 in the progress of NPC and underlying mechanisms remain unclear....

Full description

Bibliographic Details
Main Authors: Shuai Li, Lanyan Fu, Tian Tian, Liwen Deng, Huangbin Li, Weixiong Xia, Qing Gong
Format: Article
Language:English
Published: BMC 2018-06-01
Series:Cell Communication and Signaling
Subjects:
ROS
Online Access:http://link.springer.com/article/10.1186/s12964-018-0240-3
id doaj-7e23f311024241feb6b54c1223d1254f
record_format Article
spelling doaj-7e23f311024241feb6b54c1223d1254f2020-11-25T02:01:48ZengBMCCell Communication and Signaling1478-811X2018-06-0116111310.1186/s12964-018-0240-3Disrupting SOD1 activity inhibits cell growth and enhances lipid accumulation in nasopharyngeal carcinomaShuai Li0Lanyan Fu1Tian Tian2Liwen Deng3Huangbin Li4Weixiong Xia5Qing Gong6Department of Biochemistry and Molecular Biology, GMU-GIBH Joint School of Life Sciences, Guangzhou Medical UniversityDepartment of Biochemistry and Molecular Biology, GMU-GIBH Joint School of Life Sciences, Guangzhou Medical UniversityState Key Laboratory of Oncology in South China, Collaborative Innovation Center for Cancer Medicine, Sun Yat-sen University Cancer CenterDepartment of Biochemistry and Molecular Biology, GMU-GIBH Joint School of Life Sciences, Guangzhou Medical UniversityDepartment of Biochemistry and Molecular Biology, GMU-GIBH Joint School of Life Sciences, Guangzhou Medical UniversityDepartment of Biochemistry and Molecular Biology, GMU-GIBH Joint School of Life Sciences, Guangzhou Medical UniversityDepartment of Biochemistry and Molecular Biology, GMU-GIBH Joint School of Life Sciences, Guangzhou Medical UniversityAbstract Background SOD1 is an abundant enzyme that has been studied as a regulator of the antioxidant defence system, and this enzyme is well known for catalyzing the dismutation of superoxide into hydrogen peroxide. However the SOD1 in the progress of NPC and underlying mechanisms remain unclear. Methods In NPC tissue samples, SOD1 protein levels were measured by Western blot and immunohistochemical (IHC) staining. mRNA levels and SOD1 activity were monitored by qRT-PCR and SOD activity kit, respectively. Kaplan-Meier survival analysis was performed to explore the relationship between SOD1 expression and prognosis of NPC. The biological effects of SOD1 were investigated both in vitro by CCK-8, clonogenicity and apoptosis assays and in vivo by a xenograft mice model. Western blotting, ROS assay and triglyceride assays were applied to investigate the underlying molecular mechanism of pro-survival role of SOD1 in NPC. Results We observed a significant upregulation of SOD1 in NPC tissue and high SOD1 expression is a predictor of poor prognosis and is correlated with poor outcome. We confirmed the pro-survival role of SOD1 both in vitro and in vivo. We demonstrated that these mechanisms of SOD1 partly exist to maintain low levels of the superoxide anion and to avoid the accumulation of lipid droplets via enhanced CPT1A-mediated fatty acid oxidation. Conclusions The results of this study indicate that SOD1 is a potential prognostic biomarker and a promising target for NPC therapy.http://link.springer.com/article/10.1186/s12964-018-0240-3SOD1ROSNasopharyngeal carcinomaCPT1A
collection DOAJ
language English
format Article
sources DOAJ
author Shuai Li
Lanyan Fu
Tian Tian
Liwen Deng
Huangbin Li
Weixiong Xia
Qing Gong
spellingShingle Shuai Li
Lanyan Fu
Tian Tian
Liwen Deng
Huangbin Li
Weixiong Xia
Qing Gong
Disrupting SOD1 activity inhibits cell growth and enhances lipid accumulation in nasopharyngeal carcinoma
Cell Communication and Signaling
SOD1
ROS
Nasopharyngeal carcinoma
CPT1A
author_facet Shuai Li
Lanyan Fu
Tian Tian
Liwen Deng
Huangbin Li
Weixiong Xia
Qing Gong
author_sort Shuai Li
title Disrupting SOD1 activity inhibits cell growth and enhances lipid accumulation in nasopharyngeal carcinoma
title_short Disrupting SOD1 activity inhibits cell growth and enhances lipid accumulation in nasopharyngeal carcinoma
title_full Disrupting SOD1 activity inhibits cell growth and enhances lipid accumulation in nasopharyngeal carcinoma
title_fullStr Disrupting SOD1 activity inhibits cell growth and enhances lipid accumulation in nasopharyngeal carcinoma
title_full_unstemmed Disrupting SOD1 activity inhibits cell growth and enhances lipid accumulation in nasopharyngeal carcinoma
title_sort disrupting sod1 activity inhibits cell growth and enhances lipid accumulation in nasopharyngeal carcinoma
publisher BMC
series Cell Communication and Signaling
issn 1478-811X
publishDate 2018-06-01
description Abstract Background SOD1 is an abundant enzyme that has been studied as a regulator of the antioxidant defence system, and this enzyme is well known for catalyzing the dismutation of superoxide into hydrogen peroxide. However the SOD1 in the progress of NPC and underlying mechanisms remain unclear. Methods In NPC tissue samples, SOD1 protein levels were measured by Western blot and immunohistochemical (IHC) staining. mRNA levels and SOD1 activity were monitored by qRT-PCR and SOD activity kit, respectively. Kaplan-Meier survival analysis was performed to explore the relationship between SOD1 expression and prognosis of NPC. The biological effects of SOD1 were investigated both in vitro by CCK-8, clonogenicity and apoptosis assays and in vivo by a xenograft mice model. Western blotting, ROS assay and triglyceride assays were applied to investigate the underlying molecular mechanism of pro-survival role of SOD1 in NPC. Results We observed a significant upregulation of SOD1 in NPC tissue and high SOD1 expression is a predictor of poor prognosis and is correlated with poor outcome. We confirmed the pro-survival role of SOD1 both in vitro and in vivo. We demonstrated that these mechanisms of SOD1 partly exist to maintain low levels of the superoxide anion and to avoid the accumulation of lipid droplets via enhanced CPT1A-mediated fatty acid oxidation. Conclusions The results of this study indicate that SOD1 is a potential prognostic biomarker and a promising target for NPC therapy.
topic SOD1
ROS
Nasopharyngeal carcinoma
CPT1A
url http://link.springer.com/article/10.1186/s12964-018-0240-3
work_keys_str_mv AT shuaili disruptingsod1activityinhibitscellgrowthandenhanceslipidaccumulationinnasopharyngealcarcinoma
AT lanyanfu disruptingsod1activityinhibitscellgrowthandenhanceslipidaccumulationinnasopharyngealcarcinoma
AT tiantian disruptingsod1activityinhibitscellgrowthandenhanceslipidaccumulationinnasopharyngealcarcinoma
AT liwendeng disruptingsod1activityinhibitscellgrowthandenhanceslipidaccumulationinnasopharyngealcarcinoma
AT huangbinli disruptingsod1activityinhibitscellgrowthandenhanceslipidaccumulationinnasopharyngealcarcinoma
AT weixiongxia disruptingsod1activityinhibitscellgrowthandenhanceslipidaccumulationinnasopharyngealcarcinoma
AT qinggong disruptingsod1activityinhibitscellgrowthandenhanceslipidaccumulationinnasopharyngealcarcinoma
_version_ 1724955669435514880