Simvastatin reduces plasma membrane caveolae and caveolin-1 in uterine leiomyomas

Sadia Afrin1, Malak El Sabeh1, Mariko Miyashita-Ishiwata1

  • 1Department of Gynecology and Obstetrics, Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA.

Life Sciences
|June 15, 2022
PubMed
Abstract

Insights

Simvastatin reduces caveolae and caveolin-1 (CAV1) in uterine fibroids, impacting estrogen receptor signaling. This suggests new therapeutic targets for fibroid treatment.

Area of Science:

  • Cell biology
  • Molecular endocrinology
  • Pharmacology

Background:

  • Uterine leiomyomas (fibroids) are common, estrogen-dependent tumors with limited treatment options.
  • Simvastatin, a cholesterol-lowering drug, shows potential in altering estrogen signaling in fibroid cells.
  • Estrogen receptor-alpha (ER-α) localization and trafficking are linked to caveolae and caveolin-1 (CAV1).

Purpose of the Study:

  • To investigate the effects of simvastatin on plasma membrane caveolae in human uterine leiomyoma cells.
  • To examine simvastatin's impact on the expression and palmitoylation of caveolin-1 (CAV1).
  • To determine if simvastatin's effects on CAV1 influence ER-α signaling pathways.

Main Methods:

  • In vitro studies using primary and immortalized human uterine leiomyoma cells.
  • Transmission electron microscopy to quantify caveolae.
  • Analysis of human leiomyoma tissue from a randomized controlled trial following simvastatin treatment.
  • Quantitative real-time PCR, western blotting, and immunofluorescence to assess CAV1 protein and mRNA levels.

Main Results:

  • Simvastatin significantly decreased the number of caveolae in leiomyoma cells.
  • Reduced CAV1 protein abundance was observed in whole cells and the plasma membrane fraction.
  • Simvastatin decreased CAV1 palmitoylation, a modification crucial for its activation.
  • These effects on CAV1 were confirmed in human leiomyoma tissue samples.

Conclusions:

  • Caveolae and CAV1 are identified as novel molecular targets of simvastatin.
  • Simvastatin's modulation of caveolae and CAV1 may underlie its effects on ER-α signaling.
  • This research provides a potential mechanism for simvastatin in treating uterine fibroids.

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