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Progesterone stimulates mitochondrial activity with subsequent inhibition of apoptosis in MCF-10A benign breast epithelial cells.

Publication ,  Journal Article
Behera, MA; Dai, Q; Garde, R; Saner, C; Jungheim, E; Price, TM
Published in: Am J Physiol Endocrinol Metab
November 2009

The effects of progesterone on breast epithelial cells remain poorly defined with observations showing both proliferative and antiproliferative effects. As an example, progesterone levels correlate with increased epithelial cell proliferation, but there is discordance between the dividing cells and the cells with nuclear progesterone receptor expression. The release of paracrine growth factors from nuclear receptor-positive cells has been postulated as a mechanism, since in vitro studies show a lack of growth effect by progesterone in breast epithelial cells lacking nuclear receptors. This study examined possible nongenomic effects of progesterone in breast epithelia by using MCF-10A cells known to lack nuclear progesterone receptor expression. Treatment for 30-60 min with progesterone or the progestin, R5020, increased mitochondrial activity as shown by an increase in mitochondrial membrane potential (hyperpolarization) with a concordant increase in total cellular ATP. The reaction was inhibited by a specific progesterone receptor antagonist and not affected by the translation inhibitor cycloheximide. Progestin treatment inhibited apoptosis induced by activation of the FasL pathway, as shown by a decrease in sub-G(1) cell fraction during fluorescence-activated cell sorting and a decrease in caspase 3/7 levels. Progestin treatment did not alter the cell cycle over 48 h. Our study demonstrates a nongenomic action of progesterone on benign breast epithelial cells, resulting in enhanced cellular respiration and protection from apoptosis.

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Published In

Am J Physiol Endocrinol Metab

DOI

EISSN

1522-1555

Publication Date

November 2009

Volume

297

Issue

5

Start / End Page

E1089 / E1096

Location

United States

Related Subject Headings

  • fas Receptor
  • Transforming Growth Factor beta1
  • Receptors, Progesterone
  • Real-Time Polymerase Chain Reaction
  • Protein Synthesis Inhibitors
  • Progesterone
  • Oxygen Consumption
  • Mitochondria
  • Membrane Potential, Mitochondrial
  • Matrix Metalloproteinases
 

Citation

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Behera, M. A., Dai, Q., Garde, R., Saner, C., Jungheim, E., & Price, T. M. (2009). Progesterone stimulates mitochondrial activity with subsequent inhibition of apoptosis in MCF-10A benign breast epithelial cells. Am J Physiol Endocrinol Metab, 297(5), E1089–E1096. https://doi.org/10.1152/ajpendo.00209.2009
Behera, Millie A., Qunsheng Dai, Rachana Garde, Carrie Saner, Emily Jungheim, and Thomas M. Price. “Progesterone stimulates mitochondrial activity with subsequent inhibition of apoptosis in MCF-10A benign breast epithelial cells.Am J Physiol Endocrinol Metab 297, no. 5 (November 2009): E1089–96. https://doi.org/10.1152/ajpendo.00209.2009.
Behera MA, Dai Q, Garde R, Saner C, Jungheim E, Price TM. Progesterone stimulates mitochondrial activity with subsequent inhibition of apoptosis in MCF-10A benign breast epithelial cells. Am J Physiol Endocrinol Metab. 2009 Nov;297(5):E1089–96.
Behera, Millie A., et al. “Progesterone stimulates mitochondrial activity with subsequent inhibition of apoptosis in MCF-10A benign breast epithelial cells.Am J Physiol Endocrinol Metab, vol. 297, no. 5, Nov. 2009, pp. E1089–96. Pubmed, doi:10.1152/ajpendo.00209.2009.
Behera MA, Dai Q, Garde R, Saner C, Jungheim E, Price TM. Progesterone stimulates mitochondrial activity with subsequent inhibition of apoptosis in MCF-10A benign breast epithelial cells. Am J Physiol Endocrinol Metab. 2009 Nov;297(5):E1089–E1096.

Published In

Am J Physiol Endocrinol Metab

DOI

EISSN

1522-1555

Publication Date

November 2009

Volume

297

Issue

5

Start / End Page

E1089 / E1096

Location

United States

Related Subject Headings

  • fas Receptor
  • Transforming Growth Factor beta1
  • Receptors, Progesterone
  • Real-Time Polymerase Chain Reaction
  • Protein Synthesis Inhibitors
  • Progesterone
  • Oxygen Consumption
  • Mitochondria
  • Membrane Potential, Mitochondrial
  • Matrix Metalloproteinases