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Published on: December 26, 2016
Prolactin-induced mouse mammary carcinomas model estrogen resistant luminal breast cancer
Lisa M Arendt1, Debra E Rugowski, Tara A Grafwallner-Huseth
1Department of Comparative Biosciences, University of Wisconsin-Madison, 2015 Linden Dr., Madison, WI 53706, USA.
Introduction:
Tumors that express estrogen receptor alpha (ERα+) comprise 75% of breast cancers in women. While treatments directed against this receptor have successfully lowered mortality rates, many primary tumors initially or later exhibit resistance. The paucity of murine models of this "luminal" tumor subtype has hindered studies of factors that promote their pathogenesis and modulate responsiveness to estrogen-directed therapeutics. Since epidemiologic studies closely link prolactin and the development of ERα+ tumors in women, we examined characteristics of the aggressive ERα+ and ERα- carcinomas which develop in response to mammary prolactin in a murine transgenic model (neu-related lipocalin- prolactin (NRL-PRL)). To evaluate their relationship to clinical tumors, we determined phenotypic relationships among these carcinomas, other murine models of breast cancer, and features of luminal tumors in women.
Methods:
We examined a panel of prolactin-induced tumors for characteristics relevant to clinical tumors: histotype, ERα/progesterone receptor (PR) expression and estrogen responsiveness, Activating Protein 1 (AP-1) components, and phosphorylation of signal transducer and activator of transcription 5 (Stat5), extracellular signal regulated kinase (ERK) 1/2 and AKT. We compared levels of transcripts in the ERα-associated "luminal" signature that defines this subtype of tumors in women and transcripts enriched in various mammary epithelial lineages to other well-studied genetically modified murine models of breast cancer. Finally, we used microarray analyses to compare prolactin-induced ERα+ and ERα- tumors, and examined responsiveness to estrogen and the anti-estrogen, Faslodex, in vivo.
Results:
Prolactin-induced carcinomas were markedly diverse with respect to histotype, ERα/PR expression, and activated signaling cascades. They constituted a heterogeneous, but distinct group of murine mammary tumors, with molecular features of the luminal subtype of human breast cancer. In contrast to morphologically normal and hyperplastic structures in NRL-PRL females, carcinomas were insensitive to ERα-mediated signals. These tumors were distinct from mouse mammary tumor virus (MMTV)-neu tumors, and contained elevated transcripts for factors associated with luminal/alveolar expansion and differentiation, suggesting that they arose from physiologic targets of prolactin. These features were shared by ERα+ and ERα- tumors, suggesting a common origin, although the former exhibited transcript profiles reflecting greater differentiation.
Conclusions:
Our studies demonstrate that prolactin can promote diverse carcinomas in mice, many of which resemble luminal breast cancers, providing a novel experimental model to examine the pathogenesis, progression and treatment responsiveness of this tumor subtype.
Insights
Prolactin can induce diverse mouse carcinomas resembling human luminal breast cancer. This new model aids research into luminal breast cancer pathogenesis and treatment resistance.
Area of Science:
- Oncology
- Endocrinology
- Genetics
Background:
- Estrogen receptor alpha (ERα+) breast cancers are common, but treatment resistance is a challenge.
- A lack of suitable mouse models hinders research into ERα+ breast cancer pathogenesis.
- Prolactin is epidemiologically linked to ERα+ tumor development in women.
Purpose of the Study:
- To investigate prolactin's role in ERα+ and ERα- breast cancer development using a novel murine model.
- To characterize prolactin-induced carcinomas and compare them to human luminal breast cancers.
- To evaluate the potential of this model for studying treatment responsiveness.
Main Methods:
- Analysis of prolactin-induced tumors for histotype, receptor expression, and signaling pathways.
- Transcriptomic comparison with human luminal breast cancer signatures and other mouse models.
- In vivo assessment of tumor responsiveness to estrogen and anti-estrogen therapy.
Main Results:
- Prolactin induced diverse carcinomas with features of human luminal breast cancer.
- These tumors exhibited heterogeneity in ERα/progesterone receptor (PR) expression and signaling.
- Carcinomas were insensitive to ERα-mediated signals, unlike normal tissues.
Conclusions:
- Prolactin can drive the development of various carcinomas in mice, mimicking human luminal breast cancer.
- This provides a valuable new model for studying the pathogenesis and progression of this breast cancer subtype.
- The model can be used to investigate treatment strategies for luminal breast cancer.

