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Published in: Reproductive Biology and Endocrinology 1/2012

Open Access 01-12-2012 | Research

Expression of the G protein-coupled estrogen receptor (GPER) in endometriosis: a tissue microarray study

Authors: Nicolas Samartzis, Eleftherios P Samartzis, Aurelia Noske, André Fedier, Konstantin J Dedes, Rosmarie Caduff, Daniel Fink, Patrick Imesch

Published in: Reproductive Biology and Endocrinology | Issue 1/2012

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Abstract

Background

The G protein-coupled estrogen receptor (GPER) is thought to be involved in non-genomic estrogen responses as well as processes such as cell proliferation and migration. In this study, we analyzed GPER expression patterns from endometriosis samples and normal endometrial tissue samples and compared these expression profiles to those of the classical sex hormone receptors.

Methods

A tissue microarray, which included 74 samples from different types of endometriosis (27 ovarian, 19 peritoneal and 28 deep-infiltrating) and 30 samples from normal endometrial tissue, was used to compare the expression levels of the GPER, estrogen receptor (ER)-alpha, ER-beta and progesterone receptor (PR). The immunoreactive score (IRS) was calculated separately for epithelium and stroma as the product of the staining intensity and the percentage of positive cells. The expression levels of the hormonal receptors were dichotomized into low (IRS < 6) and high (IRS > =6) expression groups.

Results

The mean epithelial IRS (+/−standard deviation, range) of cytoplasmic GPER expression was 1.2 (+/−1.7, 0–4) in normal endometrium and 5.1 (+/−3.5, 0–12) in endometriosis (p < 0.001), of nuclear GPER 6.4 (+/−2.6, 0–12) and 6.8 (+/−2.9, 2–12; p = 0.71), of ER-alpha 10.6 (+/−2.4, 3–12) and 9.8 (+/−3.0, 2–12; p = 0.26), of ER-beta 2.4 (+/−2.2; 0–8) and 5.6 (+/−2.6; 0–10; p < 0.001), and of PR 11.5 (+/−1.7; 3–12) and 8.1 (+/−4.5; 0–12; p < 0.001), respectively. The mean stromal IRS of nuclear GPER expression was 7.7 (+/−3.0; 2–12) in endometrium and 10.8 (+/−1.7; 6–12) in endometriosis (p < 0.001), of ER-alpha 8.7 (+/−3.1; 2–12) and 10.6 (+/−2.4; 2–12; p = 0.001), of ER-beta 1.8 (+/−2.0; 0–8) and 5.4 (+/−2.5; 0–10; p < 0.001), and of PR 11.7 (+/−0.9; 8–12) and 10.9 (+/−2.0; 3–12; p = 0.044), respectively. Cytoplasmic GPER expression was not detectable in the stroma of endometrium and endometriosis. The observed frequency of high epithelial cytoplasmic GPER expression levels was 50% (n = 30/60) in the endometriosis and none (0/30) in the normal endometrium samples (p < 0.001). High epithelial cytoplasmic GPER expression levels were more frequent in endometriomas (14/20, 70%; p = 0.01), as compared to peritoneal (9/18, 50%) or deep-infiltrating endometriotic lesions (7/22, 31.8%). The frequency of high stromal nuclear GPER expression levels was 100% (n = 74/74) in endometriosis and 76.7% (n = 23/30) in normal endometrium (p < 0.001). The frequency of high epithelial nuclear GPER expression levels did not differ between endometriosis and normal endometrium.

Conclusions

The present data indicate a unique GPER expression pattern in endometriosis, especially in endometriomas as compared to the normal endometrium. The overexpression of GPER in endometriotic lesions suggests a potential role for GPER in the hormonal regulation of endometriosis, which should be taken into consideration for future hormonal treatment strategies.
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Literature
1.
3.
go back to reference Eskenazi B, Warner ML: Epidemiology of endometriosis. Obstet Gynecol Clin North Am. 1997, 24: 235-258. 10.1016/S0889-8545(05)70302-8.CrossRefPubMed Eskenazi B, Warner ML: Epidemiology of endometriosis. Obstet Gynecol Clin North Am. 1997, 24: 235-258. 10.1016/S0889-8545(05)70302-8.CrossRefPubMed
5.
go back to reference Prossnitz ER, Maggiolini M: Mechanisms of estrogen signaling and gene expression via GPR30. Mol Cell Endocrinol. 2009, 308: 32-38. 10.1016/j.mce.2009.03.026.PubMedCentralCrossRefPubMed Prossnitz ER, Maggiolini M: Mechanisms of estrogen signaling and gene expression via GPR30. Mol Cell Endocrinol. 2009, 308: 32-38. 10.1016/j.mce.2009.03.026.PubMedCentralCrossRefPubMed
6.
go back to reference Maggiolini M, Picard D: The unfolding stories of GPR30, a new membrane-bound estrogen receptor. J Endocrinol. 2010, 204: 105-114. 10.1677/JOE-09-0242.CrossRefPubMed Maggiolini M, Picard D: The unfolding stories of GPR30, a new membrane-bound estrogen receptor. J Endocrinol. 2010, 204: 105-114. 10.1677/JOE-09-0242.CrossRefPubMed
7.
go back to reference Lin BC, Suzawa M, Blind RD, Tobias SC, Bulun SE, Scanlan TS, Ingraham HA: Stimulating the GPR30 estrogen receptor with a novel tamoxifen analogue activates SF-1 and promotes endometrial cell proliferation. Cancer Res. 2009, 69: 5415-5423. 10.1158/0008-5472.CAN-08-1622.PubMedCentralCrossRefPubMed Lin BC, Suzawa M, Blind RD, Tobias SC, Bulun SE, Scanlan TS, Ingraham HA: Stimulating the GPR30 estrogen receptor with a novel tamoxifen analogue activates SF-1 and promotes endometrial cell proliferation. Cancer Res. 2009, 69: 5415-5423. 10.1158/0008-5472.CAN-08-1622.PubMedCentralCrossRefPubMed
8.
go back to reference Revankar CM, Cimino DF, Sklar LA, Arterburn JB, Prossnitz ER: A transmembrane intracellular estrogen receptor mediates rapid cell signaling. Science. 2005, 307: 1625-1630. 10.1126/science.1106943.CrossRefPubMed Revankar CM, Cimino DF, Sklar LA, Arterburn JB, Prossnitz ER: A transmembrane intracellular estrogen receptor mediates rapid cell signaling. Science. 2005, 307: 1625-1630. 10.1126/science.1106943.CrossRefPubMed
9.
go back to reference Prossnitz ER, Oprea TI, Sklar LA, Arterburn JB: The ins and outs of GPR30: a transmembrane estrogen receptor. J Steroid Biochem Mol Biol. 2008, 109: 350-353. 10.1016/j.jsbmb.2008.03.006.PubMedCentralCrossRefPubMed Prossnitz ER, Oprea TI, Sklar LA, Arterburn JB: The ins and outs of GPR30: a transmembrane estrogen receptor. J Steroid Biochem Mol Biol. 2008, 109: 350-353. 10.1016/j.jsbmb.2008.03.006.PubMedCentralCrossRefPubMed
10.
go back to reference He YY, Cai B, Yang YX, Liu XL, Wan XP: Estrogenic G protein-coupled receptor 30 signaling is involved in regulation of endometrial carcinoma by promoting proliferation, invasion potential, and interleukin-6 secretion via the MEK/ERK mitogen-activated protein kinase pathway. Cancer Sci. 2009, 100: 1051-1061. 10.1111/j.1349-7006.2009.01148.x.CrossRefPubMed He YY, Cai B, Yang YX, Liu XL, Wan XP: Estrogenic G protein-coupled receptor 30 signaling is involved in regulation of endometrial carcinoma by promoting proliferation, invasion potential, and interleukin-6 secretion via the MEK/ERK mitogen-activated protein kinase pathway. Cancer Sci. 2009, 100: 1051-1061. 10.1111/j.1349-7006.2009.01148.x.CrossRefPubMed
11.
go back to reference Bulun SE, Cheng YH, Pavone ME, Xue Q, Attar E, Trukhacheva E, Tokunaga H, Utsunomiya H, Yin P, Luo X, et al: Estrogen receptor-beta, estrogen receptor-alpha, and progesterone resistance in endometriosis. Semin Reprod Med. 2010, 28: 36-43. 10.1055/s-0029-1242991.PubMedCentralCrossRefPubMed Bulun SE, Cheng YH, Pavone ME, Xue Q, Attar E, Trukhacheva E, Tokunaga H, Utsunomiya H, Yin P, Luo X, et al: Estrogen receptor-beta, estrogen receptor-alpha, and progesterone resistance in endometriosis. Semin Reprod Med. 2010, 28: 36-43. 10.1055/s-0029-1242991.PubMedCentralCrossRefPubMed
12.
go back to reference Kononen J, Bubendorf L, Kallioniemi A, Barlund M, Schraml P, Leighton S, Torhorst J, Mihatsch MJ, Sauter G, Kallioniemi OP: Tissue microarrays for high-throughput molecular profiling of tumor specimens. Nat Med. 1998, 4: 844-847. 10.1038/nm0798-844.CrossRefPubMed Kononen J, Bubendorf L, Kallioniemi A, Barlund M, Schraml P, Leighton S, Torhorst J, Mihatsch MJ, Sauter G, Kallioniemi OP: Tissue microarrays for high-throughput molecular profiling of tumor specimens. Nat Med. 1998, 4: 844-847. 10.1038/nm0798-844.CrossRefPubMed
13.
go back to reference Samartzis EP, Samartzis N, Noske A, Fedier A, Caduff R, Dedes KJ, Fink D, Imesch P: Loss of ARID1A/BAF250a-expression in endometriosis: a biomarker for risk of carcinogenic transformation?. Mod Pathol. 2012, 10.1038/modpathol.2011.217. [Epub ahead of print]. Samartzis EP, Samartzis N, Noske A, Fedier A, Caduff R, Dedes KJ, Fink D, Imesch P: Loss of ARID1A/BAF250a-expression in endometriosis: a biomarker for risk of carcinogenic transformation?. Mod Pathol. 2012, 10.1038/modpathol.2011.217. [Epub ahead of print].
14.
go back to reference Remmele W, Stegner HE: Recommendation for uniform definition of an immunoreactive score (IRS) for immunohistochemical estrogen receptor detection (ER-ICA) in breast cancer tissue. Pathologe. 1987, 8: 138-140.PubMed Remmele W, Stegner HE: Recommendation for uniform definition of an immunoreactive score (IRS) for immunohistochemical estrogen receptor detection (ER-ICA) in breast cancer tissue. Pathologe. 1987, 8: 138-140.PubMed
15.
go back to reference Ignatov T, Eggemann H, Semczuk A, Smith B, Bischoff J, Roessner A, Costa SD, Kalinski T, Ignatov A: Role of GPR30 in endometrial pathology after tamoxifen for breast cancer. Am J Obstet Gynecol. 2010, 203: 595-e599-516.PubMed Ignatov T, Eggemann H, Semczuk A, Smith B, Bischoff J, Roessner A, Costa SD, Kalinski T, Ignatov A: Role of GPR30 in endometrial pathology after tamoxifen for breast cancer. Am J Obstet Gynecol. 2010, 203: 595-e599-516.PubMed
16.
go back to reference ASRM: Revised American Society for Reproductive Medicine classification of endometriosis: 1996. Fertil Steril. 1997, 67: 817-821. 10.1016/S0015-0282(97)81391-X.CrossRef ASRM: Revised American Society for Reproductive Medicine classification of endometriosis: 1996. Fertil Steril. 1997, 67: 817-821. 10.1016/S0015-0282(97)81391-X.CrossRef
17.
go back to reference Bulun SE, Cheng YH, Pavone ME, Yin P, Imir G, Utsunomiya H, Thung S, Xue Q, Marsh EE, Tokunaga H, et al: 17Beta-hydroxysteroid dehydrogenase-2 deficiency and progesterone resistance in endometriosis. Semin Reprod Med. 2010, 28: 44-50. 10.1055/s-0029-1242992.PubMedCentralCrossRefPubMed Bulun SE, Cheng YH, Pavone ME, Yin P, Imir G, Utsunomiya H, Thung S, Xue Q, Marsh EE, Tokunaga H, et al: 17Beta-hydroxysteroid dehydrogenase-2 deficiency and progesterone resistance in endometriosis. Semin Reprod Med. 2010, 28: 44-50. 10.1055/s-0029-1242992.PubMedCentralCrossRefPubMed
19.
go back to reference Filardo E, Quinn J, Pang Y, Graeber C, Shaw S, Dong J, Thomas P: Activation of the novel estrogen receptor G protein-coupled receptor 30 (GPR30) at the plasma membrane. Endocrinology. 2007, 148: 3236-3245. 10.1210/en.2006-1605.CrossRefPubMed Filardo E, Quinn J, Pang Y, Graeber C, Shaw S, Dong J, Thomas P: Activation of the novel estrogen receptor G protein-coupled receptor 30 (GPR30) at the plasma membrane. Endocrinology. 2007, 148: 3236-3245. 10.1210/en.2006-1605.CrossRefPubMed
20.
go back to reference Sakamoto H, Matsuda K, Hosokawa K, Nishi M, Morris JF, Prossnitz ER, Kawata M: Expression of G protein-coupled receptor-30, a G protein-coupled membrane estrogen receptor, in oxytocin neurons of the rat paraventricular and supraoptic nuclei. Endocrinology. 2007, 148: 5842-5850. 10.1210/en.2007-0436.CrossRefPubMed Sakamoto H, Matsuda K, Hosokawa K, Nishi M, Morris JF, Prossnitz ER, Kawata M: Expression of G protein-coupled receptor-30, a G protein-coupled membrane estrogen receptor, in oxytocin neurons of the rat paraventricular and supraoptic nuclei. Endocrinology. 2007, 148: 5842-5850. 10.1210/en.2007-0436.CrossRefPubMed
21.
go back to reference Funakoshi T, Yanai A, Shinoda K, Kawano MM, Mizukami Y: G protein-coupled receptor 30 is an estrogen receptor in the plasma membrane. Biochem Biophys Res Commun. 2006, 346: 904-910. 10.1016/j.bbrc.2006.05.191.CrossRefPubMed Funakoshi T, Yanai A, Shinoda K, Kawano MM, Mizukami Y: G protein-coupled receptor 30 is an estrogen receptor in the plasma membrane. Biochem Biophys Res Commun. 2006, 346: 904-910. 10.1016/j.bbrc.2006.05.191.CrossRefPubMed
22.
go back to reference Kolkova Z, Noskova V, Ehinger A, Hansson S, Casslen B: G protein-coupled estrogen receptor 1 (GPER, GPR 30) in normal human endometrium and early pregnancy decidua. Mol Hum Reprod. 2010, 16: 743-751. 10.1093/molehr/gaq043.CrossRefPubMed Kolkova Z, Noskova V, Ehinger A, Hansson S, Casslen B: G protein-coupled estrogen receptor 1 (GPER, GPR 30) in normal human endometrium and early pregnancy decidua. Mol Hum Reprod. 2010, 16: 743-751. 10.1093/molehr/gaq043.CrossRefPubMed
23.
go back to reference Madeo A, Maggiolini M: Nuclear alternate estrogen receptor GPR30 mediates 17beta-estradiol-induced gene expression and migration in breast cancer-associated fibroblasts. Cancer Res. 2010, 70: 6036-6046. 10.1158/0008-5472.CAN-10-0408.CrossRefPubMed Madeo A, Maggiolini M: Nuclear alternate estrogen receptor GPR30 mediates 17beta-estradiol-induced gene expression and migration in breast cancer-associated fibroblasts. Cancer Res. 2010, 70: 6036-6046. 10.1158/0008-5472.CAN-10-0408.CrossRefPubMed
24.
go back to reference Cheng SB, Graeber CT, Quinn JA, Filardo EJ: Retrograde transport of the transmembrane estrogen receptor, G-protein-coupled-receptor-30 (GPR30/GPER) from the plasma membrane towards the nucleus. Steroids. 2011, 76: 892-896.PubMed Cheng SB, Graeber CT, Quinn JA, Filardo EJ: Retrograde transport of the transmembrane estrogen receptor, G-protein-coupled-receptor-30 (GPR30/GPER) from the plasma membrane towards the nucleus. Steroids. 2011, 76: 892-896.PubMed
25.
go back to reference Wang A, Ji L, Shang W, Li M, Chen L, White RE, Han G: Expression of GPR30, ERalpha and ERbeta in endometrium during window of implantation in patients with polycystic ovary syndrome: a pilot study. Gynecol Endocrinol. 2011, 27: 251-255. 10.3109/09513590.2010.487584.CrossRefPubMed Wang A, Ji L, Shang W, Li M, Chen L, White RE, Han G: Expression of GPR30, ERalpha and ERbeta in endometrium during window of implantation in patients with polycystic ovary syndrome: a pilot study. Gynecol Endocrinol. 2011, 27: 251-255. 10.3109/09513590.2010.487584.CrossRefPubMed
26.
go back to reference Dennis MK, Burai R, Ramesh C, Petrie WK, Alcon SN, Nayak TK, Bologa CG, Leitao A, Brailoiu E, Deliu E, et al: In vivo effects of a GPR30 antagonist. Nat Chem Biol. 2009, 5: 421-427. 10.1038/nchembio.168.PubMedCentralCrossRefPubMed Dennis MK, Burai R, Ramesh C, Petrie WK, Alcon SN, Nayak TK, Bologa CG, Leitao A, Brailoiu E, Deliu E, et al: In vivo effects of a GPR30 antagonist. Nat Chem Biol. 2009, 5: 421-427. 10.1038/nchembio.168.PubMedCentralCrossRefPubMed
27.
go back to reference Prossnitz ER, Arterburn JB, Smith HO, Oprea TI, Sklar LA, Hathaway HJ: Estrogen signaling through the transmembrane G protein-coupled receptor GPR30. Annu Rev Physiol. 2008, 70: 165-190. 10.1146/annurev.physiol.70.113006.100518.CrossRefPubMed Prossnitz ER, Arterburn JB, Smith HO, Oprea TI, Sklar LA, Hathaway HJ: Estrogen signaling through the transmembrane G protein-coupled receptor GPR30. Annu Rev Physiol. 2008, 70: 165-190. 10.1146/annurev.physiol.70.113006.100518.CrossRefPubMed
28.
go back to reference Filardo EJ, Quinn JA, Sabo E: Association of the membrane estrogen receptor, GPR30, with breast tumor metastasis and transactivation of the epidermal growth factor receptor. Steroids. 2008, 73: 870-873. 10.1016/j.steroids.2007.12.025.CrossRefPubMed Filardo EJ, Quinn JA, Sabo E: Association of the membrane estrogen receptor, GPR30, with breast tumor metastasis and transactivation of the epidermal growth factor receptor. Steroids. 2008, 73: 870-873. 10.1016/j.steroids.2007.12.025.CrossRefPubMed
Metadata
Title
Expression of the G protein-coupled estrogen receptor (GPER) in endometriosis: a tissue microarray study
Authors
Nicolas Samartzis
Eleftherios P Samartzis
Aurelia Noske
André Fedier
Konstantin J Dedes
Rosmarie Caduff
Daniel Fink
Patrick Imesch
Publication date
01-12-2012
Publisher
BioMed Central
Published in
Reproductive Biology and Endocrinology / Issue 1/2012
Electronic ISSN: 1477-7827
DOI
https://doi.org/10.1186/1477-7827-10-30

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