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Updated: Apr 28, 2026

Establishing 3D Endometrial Organoids from the Mouse Uterus
Published on: January 6, 2023
Perturbing the cellular levels of steroid receptor coactivator-2 impairs murine endometrial function
Maria M Szwarc1, Ramakrishna Kommagani1, Jae-Wook Jeong2
1Department of Molecular and Cellular Biology, Baylor College of Medicine, Houston, Texas, United States of America.
Abstract:
As pleiotropic coregulators, members of the p160/steroid receptor coactivator (SRC) family control a broad spectrum of transcriptional responses that underpin a diverse array of physiological and pathophysiological processes. Because of their potent coregulator properties, strict controls on SRC expression levels are required to maintain normal tissue functionality. Accordingly, an unwarranted increase in the cellular levels of SRC members has been causally linked to the initiation and/or progression of a number of clinical disorders. Although knockout mouse models have underscored the critical non-redundant roles for each SRC member in vivo, there are surprisingly few mouse models that have been engineered to overexpress SRCs. This deficiency is significant since SRC involvement in many of these disorders is based on unscheduled increases in the levels (rather than the absence) of SRC expression. To address this deficiency, we used recent mouse technology that allows for the targeted expression of human SRC-2 in cells which express the progesterone receptor. Through cre-loxP recombination driven by the endogenous progesterone receptor promoter, a marked elevation in expression levels of human SRC-2 was achieved in endometrial cells that are positive for the progesterone receptor. As a result of this increase in coregulator expression, female mice are severely subfertile due to a dysfunctional uterus, which exhibits a hypersensitivity to estrogen exposure. Our findings strongly support the proposal from clinical observations that increased levels of SRC-2 are causal for a number of endometrial disorders which compromise fertility. Future studies will use this mouse model to decipher the molecular mechanisms that underpin the endometrial defect. We believe such mechanistic insight may provide new molecular descriptors for diagnosis, prognosis, and/or therapy in the clinical management of female infertility.
Insights
Overexpressing steroid receptor coactivator-2 (SRC-2) in mouse uterus causes severe subfertility. This highlights SRC-2
Area of Science:
- Endocrinology and Reproductive Biology
- Molecular and Cellular Biology
- Genetics and Genomics
Background:
- Steroid receptor coactivator (SRC) family members are critical transcriptional regulators involved in numerous physiological and pathophysiological processes.
- Elevated SRC expression is implicated in various clinical disorders, yet functional studies using overexpression models are limited.
- Understanding the role of SRC overexpression is crucial for deciphering its contribution to diseases, particularly those involving increased SRC levels.
Purpose of the Study:
- To develop a mouse model for studying the effects of elevated steroid receptor coactivator-2 (SRC-2) expression in specific tissues.
- To investigate the consequences of increased SRC-2 levels in the female reproductive system, particularly the uterus.
- To explore the link between SRC-2 overexpression and endometrial disorders affecting fertility.
Main Methods:
- Utilized cre-loxP recombination technology for targeted overexpression of human SRC-2.
- Employed the endogenous progesterone receptor promoter to drive SRC-2 expression specifically in progesterone receptor-positive cells.
- Generated a mouse model with significantly elevated SRC-2 levels in endometrial cells.
Main Results:
- Achieved marked elevation of human SRC-2 expression in mouse endometrial cells.
- Female mice with elevated SRC-2 exhibited severe subfertility due to uterine dysfunction.
- The dysfunctional uterus showed hypersensitivity to estrogen exposure, indicating a disruption in hormonal regulation.
Conclusions:
- Increased SRC-2 expression in the uterus leads to severe subfertility and uterine dysfunction.
- Findings support clinical observations linking elevated SRC-2 levels to endometrial disorders that impair fertility.
- This novel mouse model will facilitate mechanistic studies to identify molecular targets for diagnosing and treating female infertility.
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