Cargando…

The agonistic action of URO-K10 on Kv7.4 and 7.5 channels is attenuated by co-expression of KCNE4 ancillary subunit

KCNQ family constitutes slowly-activating potassium channels among voltage-gated potassium channel superfamily. Recent studies suggested that KCNQ4 and 5 channels are abundantly expressed in smooth muscle cells, especially in lower urinary tract including corpus cavernosum and that both channels can...

Descripción completa

Detalles Bibliográficos
Autores principales: Lee, Jung Eun, Park, Christine Haewon, Kang, Hana, Ko, Juyeon, Cho, Suhan, Woo, JooHan, Chae, Mee Ree, Lee, Sung Won, Kim, Sung Joon, Kim, Jinsung, So, Insuk
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Korean Physiological Society and The Korean Society of Pharmacology 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7585595/
https://www.ncbi.nlm.nih.gov/pubmed/33093272
http://dx.doi.org/10.4196/kjpp.2020.24.6.503
_version_ 1783599826835865600
author Lee, Jung Eun
Park, Christine Haewon
Kang, Hana
Ko, Juyeon
Cho, Suhan
Woo, JooHan
Chae, Mee Ree
Lee, Sung Won
Kim, Sung Joon
Kim, Jinsung
So, Insuk
author_facet Lee, Jung Eun
Park, Christine Haewon
Kang, Hana
Ko, Juyeon
Cho, Suhan
Woo, JooHan
Chae, Mee Ree
Lee, Sung Won
Kim, Sung Joon
Kim, Jinsung
So, Insuk
author_sort Lee, Jung Eun
collection PubMed
description KCNQ family constitutes slowly-activating potassium channels among voltage-gated potassium channel superfamily. Recent studies suggested that KCNQ4 and 5 channels are abundantly expressed in smooth muscle cells, especially in lower urinary tract including corpus cavernosum and that both channels can exert membrane stabilizing effect in the tissues. In this article, we examined the electrophysiological characteristics of overexpressed KCNQ4, 5 channels in HEK293 cells with recently developed KCNQ-specific agonist. With submicromolar EC50, the drug not only increased the open probability of KCNQ4 channel but also increased slope conductance of the channel. The overall effect of the drug in whole-cell configuration was to increase maximal whole-cell conductance, to prolongate the activation process, and left-shift of the activation curve. The agonistic action of the drug, however, was highly attenuated by the co-expression of one of the β ancillary subunits of KCNQ family, KCNE4. Strong in vitro interactions between KCNQ4, 5 and KCNE4 were found through Foster Resonance Energy Transfer and co-immunoprecipitation. Although the expression levels of both KCNQ4 and KCNE4 are high in mesenteric arterial smooth muscle cells, we found that 1 μM of the agonist was sufficient to almost completely relax phenylephrine-induced contraction of the muscle strip. Significant expression of KCNQ4 and KCNE4 in corpus cavernosum together with high tonic contractility of the tissue grants highly promising relaxational effect of the KCNQ-specific agonist in the tissue.
format Online
Article
Text
id pubmed-7585595
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher The Korean Physiological Society and The Korean Society of Pharmacology
record_format MEDLINE/PubMed
spelling pubmed-75855952020-11-01 The agonistic action of URO-K10 on Kv7.4 and 7.5 channels is attenuated by co-expression of KCNE4 ancillary subunit Lee, Jung Eun Park, Christine Haewon Kang, Hana Ko, Juyeon Cho, Suhan Woo, JooHan Chae, Mee Ree Lee, Sung Won Kim, Sung Joon Kim, Jinsung So, Insuk Korean J Physiol Pharmacol Original Article KCNQ family constitutes slowly-activating potassium channels among voltage-gated potassium channel superfamily. Recent studies suggested that KCNQ4 and 5 channels are abundantly expressed in smooth muscle cells, especially in lower urinary tract including corpus cavernosum and that both channels can exert membrane stabilizing effect in the tissues. In this article, we examined the electrophysiological characteristics of overexpressed KCNQ4, 5 channels in HEK293 cells with recently developed KCNQ-specific agonist. With submicromolar EC50, the drug not only increased the open probability of KCNQ4 channel but also increased slope conductance of the channel. The overall effect of the drug in whole-cell configuration was to increase maximal whole-cell conductance, to prolongate the activation process, and left-shift of the activation curve. The agonistic action of the drug, however, was highly attenuated by the co-expression of one of the β ancillary subunits of KCNQ family, KCNE4. Strong in vitro interactions between KCNQ4, 5 and KCNE4 were found through Foster Resonance Energy Transfer and co-immunoprecipitation. Although the expression levels of both KCNQ4 and KCNE4 are high in mesenteric arterial smooth muscle cells, we found that 1 μM of the agonist was sufficient to almost completely relax phenylephrine-induced contraction of the muscle strip. Significant expression of KCNQ4 and KCNE4 in corpus cavernosum together with high tonic contractility of the tissue grants highly promising relaxational effect of the KCNQ-specific agonist in the tissue. The Korean Physiological Society and The Korean Society of Pharmacology 2020-11-01 2020-11-01 /pmc/articles/PMC7585595/ /pubmed/33093272 http://dx.doi.org/10.4196/kjpp.2020.24.6.503 Text en Copyright © Korean J Physiol Pharmacol This is an open-access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Lee, Jung Eun
Park, Christine Haewon
Kang, Hana
Ko, Juyeon
Cho, Suhan
Woo, JooHan
Chae, Mee Ree
Lee, Sung Won
Kim, Sung Joon
Kim, Jinsung
So, Insuk
The agonistic action of URO-K10 on Kv7.4 and 7.5 channels is attenuated by co-expression of KCNE4 ancillary subunit
title The agonistic action of URO-K10 on Kv7.4 and 7.5 channels is attenuated by co-expression of KCNE4 ancillary subunit
title_full The agonistic action of URO-K10 on Kv7.4 and 7.5 channels is attenuated by co-expression of KCNE4 ancillary subunit
title_fullStr The agonistic action of URO-K10 on Kv7.4 and 7.5 channels is attenuated by co-expression of KCNE4 ancillary subunit
title_full_unstemmed The agonistic action of URO-K10 on Kv7.4 and 7.5 channels is attenuated by co-expression of KCNE4 ancillary subunit
title_short The agonistic action of URO-K10 on Kv7.4 and 7.5 channels is attenuated by co-expression of KCNE4 ancillary subunit
title_sort agonistic action of uro-k10 on kv7.4 and 7.5 channels is attenuated by co-expression of kcne4 ancillary subunit
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7585595/
https://www.ncbi.nlm.nih.gov/pubmed/33093272
http://dx.doi.org/10.4196/kjpp.2020.24.6.503
work_keys_str_mv AT leejungeun theagonisticactionofurok10onkv74and75channelsisattenuatedbycoexpressionofkcne4ancillarysubunit
AT parkchristinehaewon theagonisticactionofurok10onkv74and75channelsisattenuatedbycoexpressionofkcne4ancillarysubunit
AT kanghana theagonisticactionofurok10onkv74and75channelsisattenuatedbycoexpressionofkcne4ancillarysubunit
AT kojuyeon theagonisticactionofurok10onkv74and75channelsisattenuatedbycoexpressionofkcne4ancillarysubunit
AT chosuhan theagonisticactionofurok10onkv74and75channelsisattenuatedbycoexpressionofkcne4ancillarysubunit
AT woojoohan theagonisticactionofurok10onkv74and75channelsisattenuatedbycoexpressionofkcne4ancillarysubunit
AT chaemeeree theagonisticactionofurok10onkv74and75channelsisattenuatedbycoexpressionofkcne4ancillarysubunit
AT leesungwon theagonisticactionofurok10onkv74and75channelsisattenuatedbycoexpressionofkcne4ancillarysubunit
AT kimsungjoon theagonisticactionofurok10onkv74and75channelsisattenuatedbycoexpressionofkcne4ancillarysubunit
AT kimjinsung theagonisticactionofurok10onkv74and75channelsisattenuatedbycoexpressionofkcne4ancillarysubunit
AT soinsuk theagonisticactionofurok10onkv74and75channelsisattenuatedbycoexpressionofkcne4ancillarysubunit
AT leejungeun agonisticactionofurok10onkv74and75channelsisattenuatedbycoexpressionofkcne4ancillarysubunit
AT parkchristinehaewon agonisticactionofurok10onkv74and75channelsisattenuatedbycoexpressionofkcne4ancillarysubunit
AT kanghana agonisticactionofurok10onkv74and75channelsisattenuatedbycoexpressionofkcne4ancillarysubunit
AT kojuyeon agonisticactionofurok10onkv74and75channelsisattenuatedbycoexpressionofkcne4ancillarysubunit
AT chosuhan agonisticactionofurok10onkv74and75channelsisattenuatedbycoexpressionofkcne4ancillarysubunit
AT woojoohan agonisticactionofurok10onkv74and75channelsisattenuatedbycoexpressionofkcne4ancillarysubunit
AT chaemeeree agonisticactionofurok10onkv74and75channelsisattenuatedbycoexpressionofkcne4ancillarysubunit
AT leesungwon agonisticactionofurok10onkv74and75channelsisattenuatedbycoexpressionofkcne4ancillarysubunit
AT kimsungjoon agonisticactionofurok10onkv74and75channelsisattenuatedbycoexpressionofkcne4ancillarysubunit
AT kimjinsung agonisticactionofurok10onkv74and75channelsisattenuatedbycoexpressionofkcne4ancillarysubunit
AT soinsuk agonisticactionofurok10onkv74and75channelsisattenuatedbycoexpressionofkcne4ancillarysubunit