Glucocorticoid receptor activity discriminates between progesterone and medroxyprogesterone acetate effects in breast cells

被引:0
作者
Aurélie Courtin
Laudine Communal
Myriam Vilasco
Daniela Cimino
Najat Mourra
Michele de Bortoli
Daniela Taverna
Anne-Marie Faussat
Marc Chaouat
Patricia Forgez
Anne Gompel
机构
[1] INSERM-UPMC,Center for Molecular Systems Biology and Department of Oncological Sciences
[2] UMRS 938,Molecular Biotechnology Center
[3] Hôpital Saint-Antoine,undefined
[4] University of Torino,undefined
[5] c/o Institute for Cancer Research and Treatment (IRCC),undefined
[6] University of Torino,undefined
[7] Service d’Anatomie et Cytologie Pathologiques,undefined
[8] AP-HP,undefined
[9] Hôpital Saint-Antoine,undefined
[10] Plateforme de Cytométrie,undefined
[11] IFR 65-St Antoine UMPC,undefined
[12] Université Paris Diderot,undefined
[13] AP-HP,undefined
[14] Hôpital Saint-Louis,undefined
[15] Service de Chirurgie Plastique,undefined
[16] Université Paris Descartes,undefined
[17] AP-HP,undefined
[18] Hôtel-Dieu,undefined
[19] UF de Gynécologie,undefined
来源
Breast Cancer Research and Treatment | 2012年 / 131卷
关键词
Proliferation; Differentiation; Microarrays; Normal breast cells; Glucorticoid; Glucocorticoid receptor silencing; Antiglucocorticoid; Antiprogestin; VA-2914; FAS; IEX-1;
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摘要
The purpose of this article is to determine the tumorigenic potential of estradiol treatment (E2) when combined with either progesterone (P4) or medroxyprogesterone acetate (MPA) in normal luminal human breast cells (HBE) and in human breast cancer cells (T47-D, MCF-7). Proliferation profiles were evaluated, along with the gene transactivation activity between the progesterone and glucocorticoid receptors (PR, GR) in HBE, T47-D, and MCF-7 cells treated by E2 + P4 or E2 + MPA. High throughput transcriptome analysis was performed on RNA from HBE cells treated by E2, E2 + MPA and E2 + P4. GR content was analyzed in normal breast cells as well. In HBE cells, E2 + P4 treatment was antiproliferative and promoted cellular differentiation. In contrast, E2 + MPA displayed mitogenic, antiapoptotic effects in HBE cells and did not influence cellular differentiation. The effect of P4 and MPA on cell proliferation was, however, variable in breast cancer cells. In cells containing GR or/and PR, MPA decreased proliferation whereas P4 antiproliferative effect needed the presence of PR. In HBE cells, the regulation of genes by E2 + P4, and E2 + MPA was significantly different, particularly in cell proliferation and cell death gene families. Further analysis revealed a modulation of the glucocorticoid receptor gene expression pathway by E2 + MPA. Predominant MPA glucocorticoid activity in normal and breast cancer cells was demonstrated using a glucocorticoid antagonist and the down-regulation of the GR by RNA interference. In normal luminal breast cells and in breast cancer cells, P4 and MPA combined with E2 treatment have opposing mitogenic effects due to GR. The consequences of MPA glucocorticoid potencies as well as the importance of GR in breast tissue merit a reappraisal.
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页码:49 / 63
页数:14
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