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ZDifferential modulation of Kv4.2 and Kv4.3 channels by calmodulin- dependent protein kinase II in rat cardiac myocytes.

Authors :
Colinas, Olaia
Gallego, Monica
Setién, Raol
Lopez-Lopez, José Rarnon
Perez-Garcia, M. Teresa
Casis, Oscar
Source :
American Journal of Physiology: Heart & Circulatory Physiology. Oct2006, Vol. 291 Issue 4, pH1978-H1987. 10p. 8 Graphs.
Publication Year :
2006

Abstract

In this work we have combined biochemical and electrophysiological approaches to explore the modulation of rat ventricular transient outward K+ current (Ito) by calmodulin kinase II (CaMKII). Intracellular application of CaMKII inhibitors KN93, calmidazolium, and autocamtide-2-related inhibitory peptide II (ARIP-Il) accelerated the inactivation of Ito, even at low [Ca2+]. In the same conditions, CaMKII coimmunoprecipitated with Kv4.3 channels, suggesting that phosphorylation of Kv4.3 channels modulate inactivation of Ito. Because channels underlying Ito are heteromultimers of Kv4.2 and Kv4.3, we have explored the effect of CaMKII on human embryonic kidney (HEK) cells transfected with either of those Kvα-subunits. Whereas Kv4.3 inactivated faster upon inhibition of CaMKII, Kv4.2 inactivation was insensitive to CaMKII inhibitors. However, Kv4.2 inactivation became slower when high Ca2+ was used in the pipette or when intracellular [Ca2+] ({Ca2+]i) was transiently increased. This effect was inhibited by KN93, and Western blot analysis demonstrated Ca2+-dependent phosphorylation of Kv4.2 channels. On the contrary, CaMKII coimmunoprecipitated with Kv4.3 channels without a previous Ca2+ increase, and the association was inhibited by KN93. These results suggest that both channels underlying Ito, are substrates of CaMKII, although with different sensitivities; Kv4.2 remain unphosphorylated unless [Ca2+i increases, whereas Kv4.3 are phosphorylated at rest. In addition to the functional impact that phosphorylation of Kv4 channels could cause on the shape of action potential, association of CaMKII with Kv4.3 provides a new role of Kv4.3 subunits as molecular scaffolds for concentrating CaMKII in the membrane, allowing Ca2+-dependent modulation by this enzyme of the associated Kv4.2 channels. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03636135
Volume :
291
Issue :
4
Database :
Academic Search Index
Journal :
American Journal of Physiology: Heart & Circulatory Physiology
Publication Type :
Academic Journal
Accession number :
22739917
Full Text :
https://doi.org/10.1152/ajpheart.01373.2005