Upregulation of ADAR Promotes Breast Cancer Progression and Serves as a Potential Therapeutic Target

Background. Breast cancer (BC) is the most common cause of cancer death worldwide, and its incidence is increasing every year. This study aims to investigate the expression characteristics of ADAR gene in breast cancer and to explore its role in the occurrence and development of BC and its possible...

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Main Authors: Xiao Li, Guangshun Sun, Liangliang Wu, Guoqiang Sun, Ye Cheng, Jing Tao, Zhouxiao Li, Weiwei Tang, Hanjin Wang
Format: Article
Language:English
Published: Hindawi Limited 2021-01-01
Series:Journal of Oncology
Online Access:http://dx.doi.org/10.1155/2021/2012903
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spelling doaj-cbecab2247834c108a612ecb98db06db2021-10-11T00:38:47ZengHindawi LimitedJournal of Oncology1687-84692021-01-01202110.1155/2021/2012903Upregulation of ADAR Promotes Breast Cancer Progression and Serves as a Potential Therapeutic TargetXiao Li0Guangshun Sun1Liangliang Wu2Guoqiang Sun3Ye Cheng4Jing Tao5Zhouxiao Li6Weiwei Tang7Hanjin Wang8Department of General SurgeryDepartment of General SurgeryDepartment of General SurgeryDepartment of General SurgeryDepartment of General SurgeryDepartment of General SurgeryDepartment of Hand Surgery, Plastic Surgery and Aesthetic SurgeryHepatobiliary/Liver Transplantation CenterDepartment of General SurgeryBackground. Breast cancer (BC) is the most common cause of cancer death worldwide, and its incidence is increasing every year. This study aims to investigate the expression characteristics of ADAR gene in breast cancer and to explore its role in the occurrence and development of BC and its possible mechanism. Methods. TCGA portal was used to detect the expression of ADAR in cancer including BC, and its correlation with clinicopathological data as well as other genes was analyzed via UALCAN database. The TISCH database evaluated the expression of ADAR in different types of cell populations in BC at the single-cell level. The Kaplan–Meier plotter database was used to predict the correlation between ADAR expression and BC patient prognosis. The Human Protein Atlas was used to detect the expression of ADAR in tissues and location of ADAR mRNA in cells. Moreover, the relationships between immune response and ADAR expression in BC were assessed with the use of the TISIDB. Metascape and STRING were applied to predict ADAR with other protein interactions. Finally, the effect generated by ADAR expression on cell proliferating, invading, and migrating processes was assessed in vitro with knockdown and overexpression strategies. Results. ADAR was significantly upregulated in BC tissues compared to paracancerous tissues. Single-cell RNA analysis showed that ADAR was specifically upregulated in cancer cell clusters and was also expressed in stromal and immune cell clusters. The upregulation of ADAR was positively correlated with clinicopathological stage and negatively correlated with BC prognosis. Experimental processes in vitro revealed ADAR knockdown hindered, proliferated, invaded, and migrated levels of BC cells, whereas over expression of ADAR played the opposite effect. ADAR protein, which may interact with OASL, STAT2, and IFIT3, was mainly located in the nucleoli in cells and primarily involved DNA modification and apoptotic signaling pathway. Immune factors may interact with ADAR in BC, and ADAR was found noticeably linked with immunosuppressor such as IL10, CD274, and IDO1. Conclusion. ADAR is significantly upregulated in breast cancer tissues, which may promote the progression of BC through the interaction of cancer cells, stromal cells, and immune cells. Targeting ADAR may offer new hope in treating breast cancer.http://dx.doi.org/10.1155/2021/2012903
collection DOAJ
language English
format Article
sources DOAJ
author Xiao Li
Guangshun Sun
Liangliang Wu
Guoqiang Sun
Ye Cheng
Jing Tao
Zhouxiao Li
Weiwei Tang
Hanjin Wang
spellingShingle Xiao Li
Guangshun Sun
Liangliang Wu
Guoqiang Sun
Ye Cheng
Jing Tao
Zhouxiao Li
Weiwei Tang
Hanjin Wang
Upregulation of ADAR Promotes Breast Cancer Progression and Serves as a Potential Therapeutic Target
Journal of Oncology
author_facet Xiao Li
Guangshun Sun
Liangliang Wu
Guoqiang Sun
Ye Cheng
Jing Tao
Zhouxiao Li
Weiwei Tang
Hanjin Wang
author_sort Xiao Li
title Upregulation of ADAR Promotes Breast Cancer Progression and Serves as a Potential Therapeutic Target
title_short Upregulation of ADAR Promotes Breast Cancer Progression and Serves as a Potential Therapeutic Target
title_full Upregulation of ADAR Promotes Breast Cancer Progression and Serves as a Potential Therapeutic Target
title_fullStr Upregulation of ADAR Promotes Breast Cancer Progression and Serves as a Potential Therapeutic Target
title_full_unstemmed Upregulation of ADAR Promotes Breast Cancer Progression and Serves as a Potential Therapeutic Target
title_sort upregulation of adar promotes breast cancer progression and serves as a potential therapeutic target
publisher Hindawi Limited
series Journal of Oncology
issn 1687-8469
publishDate 2021-01-01
description Background. Breast cancer (BC) is the most common cause of cancer death worldwide, and its incidence is increasing every year. This study aims to investigate the expression characteristics of ADAR gene in breast cancer and to explore its role in the occurrence and development of BC and its possible mechanism. Methods. TCGA portal was used to detect the expression of ADAR in cancer including BC, and its correlation with clinicopathological data as well as other genes was analyzed via UALCAN database. The TISCH database evaluated the expression of ADAR in different types of cell populations in BC at the single-cell level. The Kaplan–Meier plotter database was used to predict the correlation between ADAR expression and BC patient prognosis. The Human Protein Atlas was used to detect the expression of ADAR in tissues and location of ADAR mRNA in cells. Moreover, the relationships between immune response and ADAR expression in BC were assessed with the use of the TISIDB. Metascape and STRING were applied to predict ADAR with other protein interactions. Finally, the effect generated by ADAR expression on cell proliferating, invading, and migrating processes was assessed in vitro with knockdown and overexpression strategies. Results. ADAR was significantly upregulated in BC tissues compared to paracancerous tissues. Single-cell RNA analysis showed that ADAR was specifically upregulated in cancer cell clusters and was also expressed in stromal and immune cell clusters. The upregulation of ADAR was positively correlated with clinicopathological stage and negatively correlated with BC prognosis. Experimental processes in vitro revealed ADAR knockdown hindered, proliferated, invaded, and migrated levels of BC cells, whereas over expression of ADAR played the opposite effect. ADAR protein, which may interact with OASL, STAT2, and IFIT3, was mainly located in the nucleoli in cells and primarily involved DNA modification and apoptotic signaling pathway. Immune factors may interact with ADAR in BC, and ADAR was found noticeably linked with immunosuppressor such as IL10, CD274, and IDO1. Conclusion. ADAR is significantly upregulated in breast cancer tissues, which may promote the progression of BC through the interaction of cancer cells, stromal cells, and immune cells. Targeting ADAR may offer new hope in treating breast cancer.
url http://dx.doi.org/10.1155/2021/2012903
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