The transcriptional regulator TBX3 promotes progression from non-invasive to invasive breast cancer

被引:18
作者
Krstic, Milica [1 ,2 ,3 ]
Macmillan, Connor D. [1 ,2 ,3 ]
Leong, Hon S. [4 ]
Clifford, Allen G. [1 ,2 ,3 ]
Souter, Lesley H. [1 ,2 ,3 ]
Dales, David W. [1 ,2 ]
Postenka, Carl O. [1 ,2 ]
Chambers, Ann F. [1 ,2 ,3 ]
Tuck, Alan B. [1 ,2 ,3 ]
机构
[1] Western Univ, Schulich Sch Med & Dent, Dept Oncol, London, ON, Canada
[2] London Hlth Sci Ctr, London Reg Canc Program, Pamela Greenaway Kohlmeier Translat Breast Canc R, London, ON, Canada
[3] Western Univ, Schulich Sch Med & Dent, Dept Pathol, London, ON, Canada
[4] Western Univ, Schulich Sch Med & Dent, Dept Surg, London, ON, Canada
来源
BMC CANCER | 2016年 / 16卷
关键词
Breast cancer; Ductal carcinoma in situ; Epithelial-mesenchymal transition; Invasive mammary carcinoma; TBX3; ULNAR-MAMMARY SYNDROME; CELL-LINES; EPITHELIAL-CELLS; GENE-EXPRESSION; E-CADHERIN; IN-SITU; PATHWAY; SENESCENCE; EVOLUTION; DISEASE;
D O I
10.1186/s12885-016-2697-z
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Background: TBX3 is a T-box transcription factor repressor that is elevated in metastatic breast cancer and is believed to promote malignancy of tumor cells, possibly by promoting cell survival and epithelial-mesenchymal transition. Methods: The relative expression of TBX3 was assessed in the 21T cell lines which were derived from an individual patient and represent three distinct stages of breast cancer progression: 21PT, atypical ductal hyperplasia; 21NT, ductal carcinoma in situ; and 21MT-1, invasive mammary carcinoma. Two different isoforms of TBX3 (TBX3iso1 and TBX3iso2) were overexpressed to evaluate cell survival/colony forming ability, growth, and invasion in the ductal carcinoma in situ-like 21NT cell line using an in vitro Matrigel model of cancer progression. In addition, TBX3 expression was knocked down to evaluate the effects of downregulating TBX3 on the invasive mammary carcinoma-like 21MT-1 cell line. Finally, PCR array profiling was used to assess alterations in gene expression due to TBX3 overexpression in the 21NT cells. Results: TBX3 is abundant in the invasive 21MT-1 cell line, while being minimally expressed in the non-invasive 21NT and 21PT cell lines. Overexpression of either TBX3iso1 or TBX3iso2 in 21NT cells resulted in increased cell survival/colony forming ability, growth vs. apoptosis and invasion in Matrigel. In contrast, short hairpin RNA-mediated knockdown of TBX3 in the 21MT-1 cells resulted in smaller colonies, with a more regular, less dispersed (less infiltrative) morphology. Array profiling of the 21NT TBX3 iso1 and iso2 transfectants showed that there are common alterations in expression of several genes involved in signal transduction, cell cycle control/cell survival, epithelial-mesenchymal transition and invasiveness. Conclusions: Overall, these results indicate that TBX3 (isoform 1 or 2) expression can promote progression in a model of early breast cancer by altering cell properties involved in cell survival/colony formation and invasiveness, as well as key regulatory and EMT/invasiveness-related gene expressions.
引用
收藏
页数:14
相关论文
共 50 条
[21]   Subcutaneous mastectomy as an operative option for invasive and non-invasive breast cancer and as a preventive therapy - Retrospective analysis [J].
Lauschner, I ;
Beldermann, F ;
Schellinger, PD ;
Bastert, G .
GEBURTSHILFE UND FRAUENHEILKUNDE, 2005, 65 (06) :590-+
[22]   MICRO RNA-21 EXPRESSION LEVELS IN INVASIVE BREAST CARCINOMA WITH A NON-INVASIVE COMPONENT [J].
Petrovic, Nina ;
Jovanovic-Cupic, Snezana ;
Brajuskovic, Goran ;
Lukic, Silvana ;
Roganovic, Jelena ;
Krajnovic, Milena ;
Mandusic, Vesna .
ARCHIVES OF BIOLOGICAL SCIENCES, 2015, 67 (04) :1285-1295
[23]   Polymeric nanotheranostics for real-time non-invasive optical imaging of breast cancer progression and drug release [J].
Ferber, Shiran ;
Baabur-Cohen, Hemda ;
Blau, Rachel ;
Epshtein, Yana ;
Kisin-Finfer, Einat ;
Redy, Orit ;
Shabat, Doron ;
Satchi-Fainaro, Ronit .
CANCER LETTERS, 2014, 352 (01) :81-89
[24]   Estimating the natural progression of non-invasive ductal carcinoma in situ breast cancer lesions using screening data [J].
Weedon-Fekjaer, Harald ;
Li, Xiaoxue ;
Lee, Sandra .
JOURNAL OF MEDICAL SCREENING, 2021, 28 (03) :302-310
[25]   Non-invasive screening of breast cancer from fingertip smears-a proof of concept study [J].
Russo, C. ;
Wyld, L. ;
Aubreu, M. Da Costa ;
Bury, C. S. ;
Heaton, C. ;
Cole, L. M. ;
Francese, S. .
SCIENTIFIC REPORTS, 2023, 13 (01)
[26]   Non-Invasive and Real-Time Monitoring of the Breast Cancer Metastasis Degree via Metabolomics [J].
Zhu, Wanfang ;
Qian, Wenxin ;
Liao, Wenting ;
Huang, Xiaoxian ;
Xu, Jiawen ;
Qu, Wei ;
Xue, Jingwei ;
Feng, Feng ;
Liu, Wenyuan ;
Liu, Fulei ;
Han, Lingfei .
CANCERS, 2022, 14 (22)
[27]   Methylation signatures as biomarkers for non-invasive early detection of breast cancer: A systematic review of the literature [J].
Gonzalez, Tessa ;
Nie, Qian ;
Chaudhary, Lubna N. ;
Basel, Donald ;
Reddi, Honey, V .
CANCER GENETICS, 2024, 282 :1-8
[28]   Focusing Techniques in Breast Cancer Treatment Using Non-invasive Microwave Hyperthermia [J].
Phong Thanh Nguyen ;
Abbosh, A. M. .
2015 INTERNATIONAL SYMPOSIUM ON ANTENNAS AND PROPAGATION (ISAP), 2015,
[29]   Spontaneous photon emission: A promising non-invasive diagnostic tool for breast cancer [J].
Zhao, Xiaolei ;
Pang, Jingxiang ;
Fu, Jialei ;
Wang, Yong ;
Yang, Meina ;
Liu, Yanli ;
Fan, Hua ;
Zhang, Liewei ;
Han, Jinxiang .
JOURNAL OF PHOTOCHEMISTRY AND PHOTOBIOLOGY B-BIOLOGY, 2017, 166 :232-238
[30]   Structural health monitoring of tissue mechanics for non-invasive diagnosis of breast cancer [J].
Zhou, Cong ;
Hainsworth, Brent ;
Sydney, Maxwell ;
Lee, Michael ;
Ormsby, Zane ;
Haggers, Marcus ;
Chase, J. Geoffrey .
AT-AUTOMATISIERUNGSTECHNIK, 2018, 66 (12) :1037-1050