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Published on: February 21, 2014
Regulatory role for tumor suppressor REST on estrogen receptor (ESR1) expression and leiomyoma pathophysiology
Skylar G Bird1, Sumedha Gunewardena1, Ashley Cloud1
1Department of Cell Biology and Physiology, University of Kansas Medical Center, Kansas City, Kansas, USA.
Abstract:
Uterine fibroids, benign tumors of the smooth muscle layer of the uterus, plague approximately 80% of the female population by age 50. While there have been efforts to understand the mechanism behind this pathophysiology, it largely remains unclear. Lack of preclinical animal models that recapitulate aberrant steroid hormone pathways in UL has significantly hampered the development of long-term hormonal therapies for uterine fibroids. In addition, cultured myometrial as well as leiomyoma smooth muscle cells rapidly silence both estrogen receptor alpha (ESR1) and progesterone receptor (PGR) expression through unknown mechanisms, further limiting in vitro mechanistic studies of UL. Previous work by our lab has determined that the loss of REST, a master regulator of epigenetic gene silencing, in leiomyoma results in the upregulation of ESR1 targets and, therefore, estrogen signaling. Using ChIP-PCR, we find that REST is directly associated with the ESR1 genomic locus, playing a role in its epigenetic regulation. ChIP-seq analysis of Rest cKO mouse uterus samples reveals a global role for REST in the regulation of progesterone receptor target genes and highlights alterations in PGR binding within the Esr1 locus. Additionally, we find REST inhibition of ESR1 expression is regulated through the upstream WNT planar cell polarity molecule, PRICKLE1 (PK1). Based on the role of REST in silencing ESR1 expression in cultured myometrial cells, our results support the development of a potential cell culture method to maintain ESR1 expression through REST modulation. Finally, we establish a broad role for REST in epigenetic regulation relevant to leiomyoma pathophysiology.
Insights
Uterine fibroids are common, but their cause is unclear. This study reveals REST, an epigenetic regulator, controls estrogen and progesterone receptors, offering potential new therapies for uterine leiomyoma.
Area of Science:
- Reproductive biology
- Epigenetics
- Molecular endocrinology
Background:
- Uterine fibroids (UL) affect 80% of women by age 50, with unclear pathophysiology.
- Current preclinical models fail to replicate aberrant steroid hormone pathways, hindering therapy development.
- Cultured uterine smooth muscle cells lose estrogen receptor alpha (ESR1) and progesterone receptor (PGR) expression, limiting in vitro studies.
Purpose of the Study:
- Investigate the role of REST (Repressor of silencer element) in epigenetic regulation of UL.
- Determine REST's mechanism in regulating ESR1 and PGR expression.
- Explore REST's potential as a therapeutic target for UL.
Main Methods:
- Chromatin immunoprecipitation (ChIP-PCR and ChIP-seq) in leiomyoma and mouse models.
- Analysis of REST's association with ESR1 and PGR genomic loci.
- Investigated the role of PRICKLE1 (PK1) in REST-mediated ESR1 regulation.
Main Results:
- REST directly binds the ESR1 locus, epigenetically regulating its expression.
- Loss of REST in mouse models globally affects PGR target genes and alters PGR binding at the Esr1 locus.
- REST's inhibition of ESR1 is linked to the WNT pathway molecule PRICKLE1 (PK1).
Conclusions:
- REST plays a significant role in the epigenetic regulation of both ESR1 and PGR in the uterus.
- REST modulation offers a potential strategy to maintain ESR1 expression in cultured cells for mechanistic studies.
- REST is a key epigenetic regulator implicated in uterine leiomyoma pathophysiology.
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