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Nongenomic modulation of the large conductance voltage‐ and Ca(2+)‐activated K(+) channels by estrogen: A novel regulatory mechanism in human detrusor smooth muscle
Estrogens have an important role in regulating detrusor smooth muscle (DSM) function. However, the underlying molecular and cellular mechanisms by which estrogens control human DSM excitability and contractility are not well known. Here, we used human DSM specimens from open bladder surgeries on 27...
Autores principales: | , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
John Wiley and Sons Inc.
2017
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5532485/ https://www.ncbi.nlm.nih.gov/pubmed/28754781 http://dx.doi.org/10.14814/phy2.13351 |
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author | Hristov, Kiril L. Parajuli, Shankar P. Provence, Aaron Rovner, Eric S. Petkov, Georgi V. |
author_facet | Hristov, Kiril L. Parajuli, Shankar P. Provence, Aaron Rovner, Eric S. Petkov, Georgi V. |
author_sort | Hristov, Kiril L. |
collection | PubMed |
description | Estrogens have an important role in regulating detrusor smooth muscle (DSM) function. However, the underlying molecular and cellular mechanisms by which estrogens control human DSM excitability and contractility are not well known. Here, we used human DSM specimens from open bladder surgeries on 27 patients to elucidate the mechanism by which 17β‐estradiol regulates large conductance voltage‐ and Ca(2+)‐activated K(+) (BK) channels, the most prominent K(+) channels in human DSM. We employed single BK channel recordings on inside‐out excised membrane patches, perforated whole‐cell patch‐clamp on freshly isolated DSM cells, and isometric tension recordings on DSM‐isolated strips to investigate the mechanism by which 17β‐estradiol activates BK channels. 17β‐Estradiol (100 nmol/L) rapidly increased depolarization‐induced whole‐cell K(+) currents in DSM cells. The 17β‐estradiol stimulatory effects on whole‐cell BK currents were completely abolished by the selective BK channel inhibitor paxilline (1 μmol/L), clearly indicating that 17β‐estradiol specifically activates BK channels. 17β‐Estradiol also increased the frequency of ryanodine receptor‐mediated transient BK currents. Single BK channel recordings showed that 17β‐estradiol (100 nmol/L) significantly increased the BK channel open probability of inside‐out excised membrane patches, revealing that 17β‐estradiol activates BK channels directly. 17β‐Estradiol reduced spontaneous phasic contractions of human DSM‐isolated strips in a concentration‐dependent manner (100 nmol/L‐1 μmol/L), and this effect was blocked by paxilline (1 μmol/L). 17β‐Estradiol (100 nmol/L) also reduced nerve‐evoked contractions of human DSM‐isolated strips. Collectively, our results reveal that 17β‐estradiol plays a critical role in regulating human DSM function through a direct nongenomic activation of BK channels. |
format | Online Article Text |
id | pubmed-5532485 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2017 |
publisher | John Wiley and Sons Inc. |
record_format | MEDLINE/PubMed |
spelling | pubmed-55324852017-08-03 Nongenomic modulation of the large conductance voltage‐ and Ca(2+)‐activated K(+) channels by estrogen: A novel regulatory mechanism in human detrusor smooth muscle Hristov, Kiril L. Parajuli, Shankar P. Provence, Aaron Rovner, Eric S. Petkov, Georgi V. Physiol Rep Original Research Estrogens have an important role in regulating detrusor smooth muscle (DSM) function. However, the underlying molecular and cellular mechanisms by which estrogens control human DSM excitability and contractility are not well known. Here, we used human DSM specimens from open bladder surgeries on 27 patients to elucidate the mechanism by which 17β‐estradiol regulates large conductance voltage‐ and Ca(2+)‐activated K(+) (BK) channels, the most prominent K(+) channels in human DSM. We employed single BK channel recordings on inside‐out excised membrane patches, perforated whole‐cell patch‐clamp on freshly isolated DSM cells, and isometric tension recordings on DSM‐isolated strips to investigate the mechanism by which 17β‐estradiol activates BK channels. 17β‐Estradiol (100 nmol/L) rapidly increased depolarization‐induced whole‐cell K(+) currents in DSM cells. The 17β‐estradiol stimulatory effects on whole‐cell BK currents were completely abolished by the selective BK channel inhibitor paxilline (1 μmol/L), clearly indicating that 17β‐estradiol specifically activates BK channels. 17β‐Estradiol also increased the frequency of ryanodine receptor‐mediated transient BK currents. Single BK channel recordings showed that 17β‐estradiol (100 nmol/L) significantly increased the BK channel open probability of inside‐out excised membrane patches, revealing that 17β‐estradiol activates BK channels directly. 17β‐Estradiol reduced spontaneous phasic contractions of human DSM‐isolated strips in a concentration‐dependent manner (100 nmol/L‐1 μmol/L), and this effect was blocked by paxilline (1 μmol/L). 17β‐Estradiol (100 nmol/L) also reduced nerve‐evoked contractions of human DSM‐isolated strips. Collectively, our results reveal that 17β‐estradiol plays a critical role in regulating human DSM function through a direct nongenomic activation of BK channels. John Wiley and Sons Inc. 2017-07-01 /pmc/articles/PMC5532485/ /pubmed/28754781 http://dx.doi.org/10.14814/phy2.13351 Text en © 2017 The Authors. Physiological Reports published by Wiley Periodicals, Inc. on behalf of The Physiological Society and the American Physiological Society. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Original Research Hristov, Kiril L. Parajuli, Shankar P. Provence, Aaron Rovner, Eric S. Petkov, Georgi V. Nongenomic modulation of the large conductance voltage‐ and Ca(2+)‐activated K(+) channels by estrogen: A novel regulatory mechanism in human detrusor smooth muscle |
title | Nongenomic modulation of the large conductance voltage‐ and Ca(2+)‐activated K(+) channels by estrogen: A novel regulatory mechanism in human detrusor smooth muscle |
title_full | Nongenomic modulation of the large conductance voltage‐ and Ca(2+)‐activated K(+) channels by estrogen: A novel regulatory mechanism in human detrusor smooth muscle |
title_fullStr | Nongenomic modulation of the large conductance voltage‐ and Ca(2+)‐activated K(+) channels by estrogen: A novel regulatory mechanism in human detrusor smooth muscle |
title_full_unstemmed | Nongenomic modulation of the large conductance voltage‐ and Ca(2+)‐activated K(+) channels by estrogen: A novel regulatory mechanism in human detrusor smooth muscle |
title_short | Nongenomic modulation of the large conductance voltage‐ and Ca(2+)‐activated K(+) channels by estrogen: A novel regulatory mechanism in human detrusor smooth muscle |
title_sort | nongenomic modulation of the large conductance voltage‐ and ca(2+)‐activated k(+) channels by estrogen: a novel regulatory mechanism in human detrusor smooth muscle |
topic | Original Research |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5532485/ https://www.ncbi.nlm.nih.gov/pubmed/28754781 http://dx.doi.org/10.14814/phy2.13351 |
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