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Regulation of Kv4.3 and hERG potassium channels by KChIP2 isoforms and DPP6 and response to the dual K(+) channel activator NS3623

Transient outward potassium current (I(to)) contributes to early repolarization of many mammalian cardiac action potentials, including human, whilst the rapid delayed rectifier K(+) current (I(Kr)) contributes to later repolarization. Fast I(to) channels can be produced from the Shal family KCNDE ge...

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Autores principales: Lainez, Sergio, Doray, Adélaïde, Hancox, Jules C., Cannell, Mark B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5906734/
https://www.ncbi.nlm.nih.gov/pubmed/29378180
http://dx.doi.org/10.1016/j.bcp.2018.01.036
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author Lainez, Sergio
Doray, Adélaïde
Hancox, Jules C.
Cannell, Mark B.
author_facet Lainez, Sergio
Doray, Adélaïde
Hancox, Jules C.
Cannell, Mark B.
author_sort Lainez, Sergio
collection PubMed
description Transient outward potassium current (I(to)) contributes to early repolarization of many mammalian cardiac action potentials, including human, whilst the rapid delayed rectifier K(+) current (I(Kr)) contributes to later repolarization. Fast I(to) channels can be produced from the Shal family KCNDE gene product Kv4.3s, although accessory subunits including KChIP2.x and DPP6 are also needed to produce a near physiological I(to). In this study, the effect of KChIP2.1 & KChIP2.2 (also known as KChIP2b and KChIP2c respectively), alone or in conjunction with the accessory subunit DPP6, on both Kv4.3 and hERG were evaluated. A dual I(to) and I(Kr) activator, NS3623, has been recently proposed to be beneficial in heart failure and the action of NS3623 on the two channels was also investigated. Whole-cell patch-clamp experiments were performed at 33 ± 1 °C on HEK293 cells expressing Kv4.3 or hERG in the absence or presence of these accessory subunits. Kv4.3 current magnitude was augmented by co-expression with either KChIP2.2 or KChIP2.1 and KChIP2/DPP6 with KChIP2.1 producing a greater effect than KChIP2.2. Adding DPP6 removed the difference in Kv4.3 augmentation between KChIP2.1 and KChIP2.2. The inactivation rate and recovery from inactivation were also altered by KChIP2 isoform co-expression. In contrast, hERG (Kv11.1) current was not altered by co-expression with KChIP2.1, KChIP2.2 or DPP6. NS3623 increased Kv4.3 amplitude to a similar extent with and without accessory subunit co-expression, however KChIP2 isoforms modulated the compound’s effect on inactivation time course. The agonist effect of NS3623 on hERG channels was not affected by KChIP2.1, KChIP2.2 or DPP6 co-expression.
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spelling pubmed-59067342018-04-20 Regulation of Kv4.3 and hERG potassium channels by KChIP2 isoforms and DPP6 and response to the dual K(+) channel activator NS3623 Lainez, Sergio Doray, Adélaïde Hancox, Jules C. Cannell, Mark B. Biochem Pharmacol Article Transient outward potassium current (I(to)) contributes to early repolarization of many mammalian cardiac action potentials, including human, whilst the rapid delayed rectifier K(+) current (I(Kr)) contributes to later repolarization. Fast I(to) channels can be produced from the Shal family KCNDE gene product Kv4.3s, although accessory subunits including KChIP2.x and DPP6 are also needed to produce a near physiological I(to). In this study, the effect of KChIP2.1 & KChIP2.2 (also known as KChIP2b and KChIP2c respectively), alone or in conjunction with the accessory subunit DPP6, on both Kv4.3 and hERG were evaluated. A dual I(to) and I(Kr) activator, NS3623, has been recently proposed to be beneficial in heart failure and the action of NS3623 on the two channels was also investigated. Whole-cell patch-clamp experiments were performed at 33 ± 1 °C on HEK293 cells expressing Kv4.3 or hERG in the absence or presence of these accessory subunits. Kv4.3 current magnitude was augmented by co-expression with either KChIP2.2 or KChIP2.1 and KChIP2/DPP6 with KChIP2.1 producing a greater effect than KChIP2.2. Adding DPP6 removed the difference in Kv4.3 augmentation between KChIP2.1 and KChIP2.2. The inactivation rate and recovery from inactivation were also altered by KChIP2 isoform co-expression. In contrast, hERG (Kv11.1) current was not altered by co-expression with KChIP2.1, KChIP2.2 or DPP6. NS3623 increased Kv4.3 amplitude to a similar extent with and without accessory subunit co-expression, however KChIP2 isoforms modulated the compound’s effect on inactivation time course. The agonist effect of NS3623 on hERG channels was not affected by KChIP2.1, KChIP2.2 or DPP6 co-expression. Elsevier Science 2018-04 /pmc/articles/PMC5906734/ /pubmed/29378180 http://dx.doi.org/10.1016/j.bcp.2018.01.036 Text en © 2018 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lainez, Sergio
Doray, Adélaïde
Hancox, Jules C.
Cannell, Mark B.
Regulation of Kv4.3 and hERG potassium channels by KChIP2 isoforms and DPP6 and response to the dual K(+) channel activator NS3623
title Regulation of Kv4.3 and hERG potassium channels by KChIP2 isoforms and DPP6 and response to the dual K(+) channel activator NS3623
title_full Regulation of Kv4.3 and hERG potassium channels by KChIP2 isoforms and DPP6 and response to the dual K(+) channel activator NS3623
title_fullStr Regulation of Kv4.3 and hERG potassium channels by KChIP2 isoforms and DPP6 and response to the dual K(+) channel activator NS3623
title_full_unstemmed Regulation of Kv4.3 and hERG potassium channels by KChIP2 isoforms and DPP6 and response to the dual K(+) channel activator NS3623
title_short Regulation of Kv4.3 and hERG potassium channels by KChIP2 isoforms and DPP6 and response to the dual K(+) channel activator NS3623
title_sort regulation of kv4.3 and herg potassium channels by kchip2 isoforms and dpp6 and response to the dual k(+) channel activator ns3623
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5906734/
https://www.ncbi.nlm.nih.gov/pubmed/29378180
http://dx.doi.org/10.1016/j.bcp.2018.01.036
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