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Published on: May 18, 2020
A humanized pattern of aromatase expression is associated with mammary hyperplasia in mice
Hong Zhao1, Elizabeth K Pearson, David C Brooks
1Division of Reproductive Biology Research, Department of Obstetrics and Gynecology, Feinberg School of Medicine, Northwestern University, Chicago, Illinois 60611, USA. h-zhao@northwestern.edu
Abstract:
Aromatase is essential for estrogen production and is the target of aromatase inhibitors, the most effective endocrine treatment for postmenopausal breast cancer. Peripheral tissues in women, including the breast, express aromatase via alternative promoters. Female mice lack the promoters that drive aromatase expression in peripheral tissues; thus, we generated a transgenic humanized aromatase (Arom(hum)) mouse line containing a single copy of the human aromatase gene to study the link between aromatase expression in mammary adipose tissue and breast pathology. Arom(hum) mice expressed human aromatase, driven by the proximal human promoters II and I.3 and the distal promoter I.4, in breast adipose fibroblasts and myoepithelial cells. Estrogen levels in the breast tissue of Arom(hum) mice were higher than in wild-type mice, whereas circulating levels were similar. Arom(hum) mice exhibited accelerated mammary duct elongation at puberty and an increased incidence of lobuloalveolar breast hyperplasia associated with increased signal transducer and activator of transcription-5 phosphorylation at 24 and 64 wk. Hyperplastic epithelial cells showed remarkably increased proliferative activity. Thus, we demonstrated that the human aromatase gene can be expressed via its native promoters in a wide variety of mouse tissues and in a distribution pattern nearly identical to that of humans. Locally increased tissue levels, but not circulating levels, of estrogen appeared to exert hyperplastic effects on the mammary gland. This novel mouse model will be valuable for developing tissue-specific aromatase inhibition strategies.
Insights
A novel mouse model expressing human aromatase (Arom(hum)) shows increased local estrogen in mammary tissue, leading to accelerated duct growth and hyperplasia. This model aids in developing targeted aromatase inhibition strategies for breast cancer.
Area of Science:
- Endocrinology
- Molecular Biology
- Oncology
Background:
- Aromatase is crucial for estrogen synthesis and a key target in breast cancer therapy.
- Tissue-specific aromatase expression in women differs from mice, limiting current models.
- Understanding local estrogen's role in breast pathology is vital.
Purpose of the Study:
- To develop a humanized aromatase mouse model (Arom(hum)) to study tissue-specific estrogen production.
- To investigate the link between mammary adipose aromatase expression and breast pathology.
- To evaluate the impact of locally elevated estrogen on mammary gland development.
Main Methods:
- Generation of a transgenic mouse line expressing the human aromatase gene.
- Analysis of aromatase expression patterns in various tissues, including mammary gland.
- Measurement of local and circulating estrogen levels.
- Assessment of mammary gland development and hyperplasia incidence.
Main Results:
- Arom(hum) mice expressed human aromatase in breast adipose fibroblasts and myoepithelial cells via native promoters.
- Mammary tissue estrogen levels were elevated in Arom(hum) mice, while circulating levels remained similar.
- Accelerated mammary duct elongation and increased lobuloalveolar hyperplasia were observed.
- Hyperplastic epithelial cells demonstrated heightened proliferative activity.
Conclusions:
- The human aromatase gene can be expressed in mice with a human-like tissue distribution.
- Locally increased, not circulating, estrogen levels appear to drive mammary gland hyperplasia.
- The Arom(hum) mouse model is a valuable tool for studying tissue-specific estrogen effects and developing targeted therapies for breast cancer.

