Please use this identifier to cite or link to this item:
http://hdl.handle.net/10261/279632
Share/Export:
![]() ![]() |
|
Visualizar otros formatos: MARC | Dublin Core | RDF | ORE | MODS | METS | DIDL | DATACITE | |
Title: | Modulation of KV4.3-KChIP2 Channels by IQM-266: Role of DPP6 and KCNE2 |
Authors: | Benito-Bueno, Ángela de CSIC ORCID; Socuéllamos, Paula G. CSIC ORCID; Merinero, Yaiza G.; Cercós, Pilar CSIC; Izquierdo García, Carolina CSIC ORCID; Daniel-Mozo, Miguel CSIC ORCID; Marín-Olivero, Irene; Pérez-Lara, Ángel; González-Vera, Juan A. CSIC ORCID; Orte, Angel; Albert, Armando CSIC ORCID; Martín-Martínez, Mercedes CSIC ORCID; Gutiérrez-Rodríguez, Marta CSIC ORCID ; Valenzuela, Carmen CSIC ORCID CVN | Keywords: | KV4 channels KChIP2 DPP6 KCNE KChIP2 ligan |
Issue Date: | 2022 | Publisher: | Multidisciplinary Digital Publishing Institute | Citation: | International Journal of Molecular Science 23 : 917 (2022) | Abstract: | The transient outward potassium current (Itof) is generated by the activation of KV4 chan- nels assembled with KChIP2 and other accessory subunits (DPP6 and KCNE2). To test the hypothesis that these subunits modify the channel pharmacology, we analyzed the electrophysiological effects of (3-(2-(3-phenoxyphenyl)acetamido)-2-naphthoic acid) (IQM-266), a new KChIP2 ligand, on the currents generated by KV4.3/KChIP2, KV4.3/KChIP2/DPP6 and KV4.3/KChIP2/KCNE2 channels. CHO cells were transiently transfected with cDNAs codifying for different proteins (KV4.3/KChIP2, KV4.3/KChIP2/DPP6 or KV4.3/KChIP2/KCNE2), and the potassium currents were recorded using the whole-cell patch-clamp technique. IQM-266 decreased the maximum peak of KV4.3/KChIP2, KV4.3/KChIP2/DPP6 and KV4.3/KChIP2/KCNE2 currents, slowing their time course of inactivation in a concentration-, voltage-, time- and use-dependent manner. IQM-266 produced an increase in the charge in KV4.3/KChIP2 channels that was intensified when DPP6 was present and abolished in the presence of KCNE2. IQM-266 induced an activation unblocking effect during the applica- tion of trains of pulses to cells expressing KV4.3/KChIP2 and KV4.3/KChIP2/KCNE2, but not in KV4.3/KChIP2/DPP6 channels. Overall, all these results are consistent with a preferential IQM-266 binding to an active closed state of Kv4.3/KChIP2 and Kv4.3/KChIP2/KCNE2 channels, whereas in the presence of DPP6, IQM-266 binds preferentially to an inactivated state. In conclusion, DPP6 and KCNE2 modify the pharmacological response of KV4.3/KChIP2 channels to IQM-266. | Publisher version (URL): | https://doi.org/10.3390/ijms23169170 | URI: | http://hdl.handle.net/10261/279632 | DOI: | 10.3390/ijms23169170 |
Appears in Collections: | (IQM) Artículos (IIBM) Artículos (IQF) Artículos |
Files in This Item:
File | Description | Size | Format | |
---|---|---|---|---|
ijms-23-09170-v3-2.pdf | Artículo principal | 2,29 MB | Adobe PDF | ![]() View/Open |
Review this work
SCOPUSTM
Citations
1
checked on Sep 13, 2023
WEB OF SCIENCETM
Citations
1
checked on Sep 18, 2023
Page view(s)
263
checked on Sep 25, 2023
Download(s)
55
checked on Sep 25, 2023
Google ScholarTM
Check
Altmetric
Altmetric
WARNING: Items in Digital.CSIC are protected by copyright, with all rights reserved, unless otherwise indicated.