Transcriptome profiling identified differentially expressed genes and pathways associated with tamoxifen resistance in human breast cancer

被引:30
作者
Men, Xin [1 ]
Ma, Jun [1 ]
Wu, Tong [1 ]
Pu, Junyi [1 ]
Wen, Shaojia [1 ]
Shen, Jianfeng [1 ]
Wang, Xun [1 ]
Wang, Yamin [1 ]
Chen, Chao [1 ]
Dai, Penggao [1 ]
机构
[1] Northwest Univ, Coll Life Sci, Natl Engn Res Ctr Miniaturized Detect Syst, Xian, Shaanxi, Peoples R China
关键词
tamoxifen; resistance; transcriptome; RNA-seq; breast cancer; ESTROGEN-RECEPTOR; COLORECTAL-CANCER; CELLS; METASTASIS; INHIBITION; ACTIVATION; MECHANISMS; REVEALS; KEGG;
D O I
10.18632/oncotarget.23694
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Tamoxifen (TAM) resistance is an important clinical problem in the treatment of breast cancer. In order to identify the mechanism of TAM resistance for estrogen receptor (ER)-positive breast cancer, we screened the transcriptome using RNA-seq and compared the gene expression profiles between the MCF-7 mamma carcinoma cell line and the TAM-resistant cell line TAMR/MCF-7, 52 significant differential expression genes (DEGs) were identified including SLIT2, ROBO, LHX, KLF, VEGFC, BAMBI, LAMA1, FLT4, PNMT, DHRS2, MAOA and ALDH. The DEGs were annotated in the GO, COG and KEGG databases. Annotation of the function of the DEGs in the KEGG database revealed the top three pathways enriched with the most DEGs, including pathways in cancer, the PI3K-AKT pathway, and focal adhesion. Then we compared the gene expression profiles between the Clinical progressive disease (PD) and the complete response (CR) from the cancer genome altas (TCGA). 10 common DEGs were identified through combining the clinical and cellular analysis results. Protein-protein interaction network was applied to analyze the association of ER signal pathway with the 10 DEGs. 3 significant genes (GFRA3, NPY1R and PTPRN2) were closely related to ER related pathway. These significant DEGs regulated many biological activities such as cell proliferation and survival, motility and migration, and tumor cell invasion. The interactions between these DEGs and drug resistance phenomenon need to be further elucidated at a functional level in further studies. Based on our findings, we believed that these DEGs could be therapeutic targets, which can be explored to develop new treatment options.
引用
收藏
页码:4074 / 4089
页数:16
相关论文
共 35 条
[1]   Molecular mechanisms of lymphangiogenesis in health and disease [J].
Alitalo, K ;
Carmeliet, P .
CANCER CELL, 2002, 1 (03) :219-227
[2]   Frequent alterations of SLIT2-ROBO1-CDC42 signalling pathway in breast cancer: clinicopathological correlation [J].
Bhattacharya, Rittwika ;
Mukherjee, Nupur ;
Dasgupta, Hemantika ;
Islam, Md. Saimul ;
Alam, Neyaz ;
Roy, Anup ;
Das, Priyobrata ;
Roychoudhury, Susanta ;
Panda, Chinmay Kumar .
JOURNAL OF GENETICS, 2016, 95 (03) :551-563
[3]   Essential role of Notch4/STAT3 signaling in epithelial-mesenchymal transition of tamoxifen-resistant human breast cancer [J].
Bui, Quyen Thu ;
Im, Ji Hye ;
Jeong, Sung Baek ;
Kim, Young-Mi ;
Lim, Sung Chul ;
Kim, Bumseok ;
Kang, Keon Wook .
CANCER LETTERS, 2017, 390 :115-125
[4]   Dual Inhibition of PI3K and mTOR Mitigates Compensatory AKT Activation and Improves Tamoxifen Response in Breast Cancer [J].
Chen, Xiaosong ;
Zhao, Meizhong ;
Hao, Mingang ;
Sun, Xueqing ;
Wang, Jinglong ;
Mao, Yan ;
Zu, Lidong ;
Liu, Junjun ;
Shen, Yandong ;
Wang, Jianhua ;
Shen, Kunwei .
MOLECULAR CANCER RESEARCH, 2013, 11 (10) :1269-1278
[5]   Breast cancer as a global health concern [J].
Coughlin, Steven S. ;
Ekwueme, Donatus U. .
CANCER EPIDEMIOLOGY, 2009, 33 (05) :315-318
[6]   GFRA3 promoter methylation may be associated with decreased postoperative survival in gastric cancer [J].
Eftang, Lars Lohne ;
Klajic, Jovana ;
Kristensen, Vessela N. ;
Tost, Joerg ;
Esbensen, Qin Ying ;
Blom, Gustav Peter ;
Bukholm, Ida Rashida Khan ;
Bukholm, Geir .
BMC CANCER, 2016, 16
[7]   Differential Gene Expression in Tamoxifen-Resistant Breast Cancer Cells Revealed by a New Analytical Model of RNA-Seq Data [J].
Huber-Keener, Kathryn J. ;
Liu, Xiuping ;
Wang, Zhong ;
Wang, Yaqun ;
Freeman, Willard ;
Wu, Song ;
Planas-Silva, Maricarmen D. ;
Ren, Xingcong ;
Cheng, Yan ;
Zhang, Yi ;
Vrana, Kent ;
Liu, Chang-Gong ;
Yang, Jin-Ming ;
Wu, Rongling .
PLOS ONE, 2012, 7 (07)
[8]   Patient-derived xenografts effectively capture responses to oncology therapy in a heterogeneous cohort of patients with solid tumors [J].
Izumchenko, E. ;
Paz, K. ;
Ciznadija, D. ;
Sloma, I. ;
Katz, A. ;
Vasquez-Dunddel, D. ;
Ben-Zvi, I. ;
Stebbing, J. ;
McGuire, W. ;
Harris, W. ;
Maki, R. ;
Gaya, A. ;
Bedi, A. ;
Zacharoulis, S. ;
Ravi, R. ;
Wexler, L. H. ;
Hoque, M. O. ;
Rodriguez-Galindo, C. ;
Pass, H. ;
Peled, N. ;
Davies, A. ;
Morris, R. ;
Hidalgo, M. ;
Sidransky, D. .
ANNALS OF ONCOLOGY, 2017, 28 (10) :2595-2605
[9]   KEGG for linking genomes to life and the environment [J].
Kanehisa, Minoru ;
Araki, Michihiro ;
Goto, Susumu ;
Hattori, Masahiro ;
Hirakawa, Mika ;
Itoh, Masumi ;
Katayama, Toshiaki ;
Kawashima, Shuichi ;
Okuda, Shujiro ;
Tokimatsu, Toshiaki ;
Yamanishi, Yoshihiro .
NUCLEIC ACIDS RESEARCH, 2008, 36 :D480-D484
[10]   Neuropeptide Y receptor mediates activation of ERK1/2 via transactivation of the IGF receptor [J].
Lecat, Sandra ;
Belemnaba, Lazare ;
Galzi, Jean-Luc ;
Bucher, Bernard .
CELLULAR SIGNALLING, 2015, 27 (07) :1297-1304