The growth response to androgen receptor signaling in ERα-negative human breast cells is dependent on p21 and mediated by MAPK activation

被引:49
作者
Garay, Joseph P. [1 ]
Karakas, Bedri [1 ]
Abukhdeir, Abde M. [1 ]
Cosgrove, David P. [1 ]
Gustin, John P. [1 ,2 ]
Higgins, Michaela J. [1 ]
Konishi, Hiroyuki [1 ]
Konishi, Yuko [1 ]
Lauring, Josh [1 ]
Mohseni, Morassa [1 ]
Wang, Grace M. [1 ]
Jelovac, Danijela [1 ]
Weeraratna, Ashani [3 ]
Baust, Cheryl A. Sherman [3 ]
Morin, Patrice J. [3 ]
Toubaji, Antoun [1 ]
Meeker, Alan [1 ]
De Marzo, Angelo M. [1 ]
Lewis, Gloria [1 ]
Subhawong, Andrea [1 ]
Argani, Pedram [1 ]
Park, Ben H. [1 ,2 ]
机构
[1] Johns Hopkins Univ, Sch Med, Sidney Kimmel Comprehens Canc Ctr, Baltimore, MD 21218 USA
[2] Johns Hopkins Univ, Whiting Sch Engn, Dept Chem & Biomol Engn, Baltimore, MD USA
[3] NIA, Lab Mol Biol & Immunol, Baltimore, MD 21224 USA
关键词
GENE-EXPRESSION; PROTEIN-KINASE; G(1) ARREST; CANCER; ESTROGEN; OVEREXPRESSION; AMPLIFICATION; IDENTIFICATION; INHIBITOR; MECHANISM;
D O I
10.1186/bcr3112
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Introduction: Although a high frequency of androgen receptor (AR) expression in human breast cancers has been described, exploiting this knowledge for therapy has been challenging. This is in part because androgens can either inhibit or stimulate cell proliferation in pre-clinical models of breast cancer. In addition, many breast cancers co-express other steroid hormone receptors that can affect AR signaling, further obfuscating the effects of androgens on breast cancer cells. Methods: To create better-defined models of AR signaling in human breast epithelial cells, we took estrogen receptor (ER)-alpha-negative and progesterone receptor (PR)-negative human breast epithelial cell lines, both cancerous and non cancerous, and engineered them to express AR, thus allowing the unambiguous study of AR signaling. We cloned a full-length cDNA of human AR, and expressed this transgene in MCF-10A non-tumorigenic human breast epithelial cells and MDA-MB-231 human breast-cancer cells. We characterized the responses to AR ligand binding using various assays, and used isogenic MCF-10A p21 knock-out cell lines expressing AR to demonstrate the requirement for p21 in mediating the proliferative responses to AR signaling in human breast epithelial cells. Results: We found that hyperactivation of the mitogen-activated protein kinase (MAPK) pathway from both AR and epidermal growth factor receptor (EGFR) signaling resulted in a growth-inhibitory response, whereas MAPK signaling from either AR or EGFR activation resulted in cellular proliferation. Additionally, p21 gene knock-out studies confirmed that AR signaling/activation of the MAPK pathway is dependent on p21. Conclusions: These studies present a new model for the analysis of AR signaling in human breast epithelial cells lacking ER alpha/PR expression, providing an experimental system without the potential confounding effects of ER alpha/PR crosstalk. Using this system, we provide a mechanistic explanation for previous observations ascribing a dual role for AR signaling in human breast cancer cells. As previous reports have shown that approximately 40% of breast cancers can lack p21 expression, our data also identify potential new caveats for exploiting AR as a target for breast cancer therapy.
引用
收藏
页数:17
相关论文
共 63 条
[1]   Physiologic estrogen receptor alpha signaling in non-tumorigenic human mammary epithelial cells [J].
Abukhdeir, Abde M. ;
Blair, Brian G. ;
Brenner, Keith ;
Karakas, Bedri ;
Konishi, Hiroyuki ;
Lim, Joselin ;
Sahasranaman, Vanita ;
Huang, Yi ;
Keen, Judith ;
Davidson, Nancy ;
Vitolo, Michele I. ;
Bachman, Kurtis E. ;
Park, Ben Ho .
BREAST CANCER RESEARCH AND TREATMENT, 2006, 99 (01) :23-33
[2]  
Abukhdeir Abde M., 2008, Expert Reviews in Molecular Medicine, V10, P1, DOI 10.1017/S1462399408000744
[3]   Androgen receptor expression in estrogen receptor-negative breast cancer - Immunohistochemical, clinical, and prognostic associations [J].
Agoff, SN ;
Swanson, PE ;
Linden, H ;
Hawes, SE ;
Lawton, TJ .
AMERICAN JOURNAL OF CLINICAL PATHOLOGY, 2003, 120 (05) :725-731
[4]   Conflicting evidence on the frequency of ESR1 amplification in breast cancer [J].
Albertson, Donna G. .
NATURE GENETICS, 2008, 40 (07) :821-822
[5]   p21WAF1/cIP1 mediates the growth response to TGF-β in human epithelial cells [J].
Bachman, KE ;
Blair, BG ;
Brenner, K ;
Bardelli, A ;
Arena, S ;
Zhou, SB ;
Hicks, J ;
De Marzo, AM ;
Argani, P ;
Park, BH .
CANCER BIOLOGY & THERAPY, 2004, 3 (02) :221-225
[6]   Androgen receptor agonist activity of the synthetic progestin, medroxyprogesterone acetate, in human breast cancer cells [J].
Bentel, JM ;
Birrell, SN ;
Pickering, MA ;
Holds, DJ ;
Horsfall, DJ ;
Tilley, WD .
MOLECULAR AND CELLULAR ENDOCRINOLOGY, 1999, 154 (1-2) :11-20
[7]   Fulvestrant (ICI 182,780) down-regulates androgen receptor expression and diminishes androgenic responses in LNCaP human prostate cancer cells [J].
Bhattacharyya, Rumi S. ;
Krishnan, Aruna V. ;
Swami, Srilatha ;
Feldman, David .
MOLECULAR CANCER THERAPEUTICS, 2006, 5 (06) :1539-1549
[8]   ANDROGENS INDUCE DIVERGENT PROLIFERATIVE RESPONSES IN HUMAN BREAST-CANCER CELL-LINES [J].
BIRRELL, SN ;
BENTEL, JM ;
HICKEY, TE ;
RICCIARDELLI, C ;
WEGER, MA ;
HORSFALL, DJ ;
TILLEY, WD .
JOURNAL OF STEROID BIOCHEMISTRY AND MOLECULAR BIOLOGY, 1995, 52 (05) :459-467
[9]   Development of an androgen reporter gene assay (AR-LUX) utilizing a human cell line with an endogenously regulated androgen receptor [J].
Blankvoort, BMG ;
de Groene, EM ;
van Meeteren-Kreikamp, AP ;
Witkamp, RF ;
Rodenburg, RJT ;
Aarts, JMMJG .
ANALYTICAL BIOCHEMISTRY, 2001, 298 (01) :93-102
[10]   Cell- and gene-specific regulation of primary target genes by the androgen receptor [J].
Bolton, Eric C. ;
So, Alex Y. ;
Chaivorapol, Christina ;
Haqq, Christopher M. ;
Li, Hao ;
Yamamoto, Keith R. .
GENES & DEVELOPMENT, 2007, 21 (16) :2005-2017