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Mating changes the subcellular distribution and the functionality of estrogen receptors in the rat oviduct

BACKGROUND: Mating changes the mode of action of 17beta-estradiol (E2) to accelerate oviductal egg transport from a nongenomic to a genomic mode, although in both pathways estrogen receptors (ER) are required. This change was designated as intracellular path shifting (IPS). METHODS: Herein, we exami...

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Autores principales: Orihuela, Pedro A, Zuñiga, Lidia M, Rios, Mariana, Parada-Bustamante, Alexis, Sierralta, Walter D, Velásquez, Luis A, Croxatto, Horacio B
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2789086/
https://www.ncbi.nlm.nih.gov/pubmed/19948032
http://dx.doi.org/10.1186/1477-7827-7-139
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author Orihuela, Pedro A
Zuñiga, Lidia M
Rios, Mariana
Parada-Bustamante, Alexis
Sierralta, Walter D
Velásquez, Luis A
Croxatto, Horacio B
author_facet Orihuela, Pedro A
Zuñiga, Lidia M
Rios, Mariana
Parada-Bustamante, Alexis
Sierralta, Walter D
Velásquez, Luis A
Croxatto, Horacio B
author_sort Orihuela, Pedro A
collection PubMed
description BACKGROUND: Mating changes the mode of action of 17beta-estradiol (E2) to accelerate oviductal egg transport from a nongenomic to a genomic mode, although in both pathways estrogen receptors (ER) are required. This change was designated as intracellular path shifting (IPS). METHODS: Herein, we examined the subcellular distribution of ESR1 and ESR2 (formerly known as ER-alpha and ER-beta) in oviductal epithelial cells of rats on day 1 of cycle (C1) or pregnancy (P1) using immunoelectron microscopy for ESR1 and ESR2. The effect of mating on intraoviductal ESR1 or ESR2 signaling was then explored comparing the expression of E2-target genes c-fos, brain creatine kinase (Ckb) and calbindin 9 kDa (s100g) in rats on C1 or P1 treated with selective agonists for ESR1 (PPT) or ESR2 (DPN). The effect of ER agonists on egg transport was also evaluated on C1 or P1 rats. RESULTS: Receptor immunoreactivity was associated with the nucleus, cytoplasm and plasma membrane of the epithelial cells. Mating affected the subcellular distribution of both receptors as well as the response to E2. In C1 and P1 rats, PPT increased Ckb while both agonists increased c-fos. DPN increased Ckb and s100g only in C1 and P1 rats, respectively. PPT accelerated egg transport in both groups and DPN accelerated egg transport only in C1 rats. CONCLUSION: Estrogen receptors present a subcellular distribution compatible with E2 genomic and nongenomic signaling in the oviductal epithelial cells of C1 and P1 although IPS occurs independently of changes in the distribution of ESR1 and ESR2 in the oviductal epithelial cells. Mating affected intraoviductal ER-signaling and induced loss of functional involvement of ESR2 on E2-induced accelerated egg transport. These findings reveal a profound influence on the ER signaling pathways exerted by mating in the oviduct.
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spelling pubmed-27890862009-12-05 Mating changes the subcellular distribution and the functionality of estrogen receptors in the rat oviduct Orihuela, Pedro A Zuñiga, Lidia M Rios, Mariana Parada-Bustamante, Alexis Sierralta, Walter D Velásquez, Luis A Croxatto, Horacio B Reprod Biol Endocrinol Research BACKGROUND: Mating changes the mode of action of 17beta-estradiol (E2) to accelerate oviductal egg transport from a nongenomic to a genomic mode, although in both pathways estrogen receptors (ER) are required. This change was designated as intracellular path shifting (IPS). METHODS: Herein, we examined the subcellular distribution of ESR1 and ESR2 (formerly known as ER-alpha and ER-beta) in oviductal epithelial cells of rats on day 1 of cycle (C1) or pregnancy (P1) using immunoelectron microscopy for ESR1 and ESR2. The effect of mating on intraoviductal ESR1 or ESR2 signaling was then explored comparing the expression of E2-target genes c-fos, brain creatine kinase (Ckb) and calbindin 9 kDa (s100g) in rats on C1 or P1 treated with selective agonists for ESR1 (PPT) or ESR2 (DPN). The effect of ER agonists on egg transport was also evaluated on C1 or P1 rats. RESULTS: Receptor immunoreactivity was associated with the nucleus, cytoplasm and plasma membrane of the epithelial cells. Mating affected the subcellular distribution of both receptors as well as the response to E2. In C1 and P1 rats, PPT increased Ckb while both agonists increased c-fos. DPN increased Ckb and s100g only in C1 and P1 rats, respectively. PPT accelerated egg transport in both groups and DPN accelerated egg transport only in C1 rats. CONCLUSION: Estrogen receptors present a subcellular distribution compatible with E2 genomic and nongenomic signaling in the oviductal epithelial cells of C1 and P1 although IPS occurs independently of changes in the distribution of ESR1 and ESR2 in the oviductal epithelial cells. Mating affected intraoviductal ER-signaling and induced loss of functional involvement of ESR2 on E2-induced accelerated egg transport. These findings reveal a profound influence on the ER signaling pathways exerted by mating in the oviduct. BioMed Central 2009-11-30 /pmc/articles/PMC2789086/ /pubmed/19948032 http://dx.doi.org/10.1186/1477-7827-7-139 Text en Copyright ©2009 Orihuela et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Orihuela, Pedro A
Zuñiga, Lidia M
Rios, Mariana
Parada-Bustamante, Alexis
Sierralta, Walter D
Velásquez, Luis A
Croxatto, Horacio B
Mating changes the subcellular distribution and the functionality of estrogen receptors in the rat oviduct
title Mating changes the subcellular distribution and the functionality of estrogen receptors in the rat oviduct
title_full Mating changes the subcellular distribution and the functionality of estrogen receptors in the rat oviduct
title_fullStr Mating changes the subcellular distribution and the functionality of estrogen receptors in the rat oviduct
title_full_unstemmed Mating changes the subcellular distribution and the functionality of estrogen receptors in the rat oviduct
title_short Mating changes the subcellular distribution and the functionality of estrogen receptors in the rat oviduct
title_sort mating changes the subcellular distribution and the functionality of estrogen receptors in the rat oviduct
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2789086/
https://www.ncbi.nlm.nih.gov/pubmed/19948032
http://dx.doi.org/10.1186/1477-7827-7-139
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