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Calcium Ions Regulate K+ Uptake into Brain Mitochondria: The Evidence for a Novel Potassium Channel.

Authors :
Skalska, Jolanta
Bednarczyk, Piotr
Piwońska, Marta
Kulawiak, Bogusz
Wilczynski, Grzegorz
Dołowy, Krzysztof
Kudin, Alexei P.
Kunz, Wolfram S.
Szewczyk, Adam
Source :
International Journal of Molecular Sciences; Mar2009, Vol. 10 Issue 3, p1104-1120, 17p, 1 Color Photograph, 5 Graphs
Publication Year :
2009

Abstract

The mitochondrial response to changes of cytosolic calcium concentration has a strong impact on neuronal cell metabolism and viability. We observed that Ca<superscript>2+</superscript> additions to isolated rat brain mitochondria induced in potassium ion containing media a mitochondrial membrane potential depolarization and an accompanying increase of mitochondrial respiration. These Ca<superscript>2+</superscript> effects can be blocked by iberiotoxin and charybdotoxin, well known inhibitors of large conductance potassium channel (BK<subscript>Ca</subscript> channel). Furthermore, NS1619 - a BK<subscript>Ca</subscript> channel opener - induced potassium ion-specific effects on brain mitochondria similar to those induced by Ca<superscript>2+</superscript>. These findings suggest the presence of a calcium-activated, large conductance potassium channel (sensitive to charybdotoxin and NS1619), which was confirmed by reconstitution of the mitochondrial inner membrane into planar lipid bilayers. The conductance of the reconstituted channel was 265 pS under gradient (50/450 mM KCl) conditions. Its reversal potential was equal to 50 mV, which proved that the examined channel was cation-selective. We also observed immunoreactivity of anti-β<subscript>4</subscript> subunit (of the BK<subscript>Ca</subscript> channel) antibodies with ∼26 kDa proteins of rat brain mitochondria. Immunohistochemical analysis confirmed the predominant occurrence of β<subscript>4</subscript> subunit in neuronal mitochondria. We hypothesize that the mitochondrial BK<subscript>Ca</subscript> channel represents a calcium sensor, which can contribute to neuronal signal transduction and survival. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
16616596
Volume :
10
Issue :
3
Database :
Complementary Index
Journal :
International Journal of Molecular Sciences
Publication Type :
Academic Journal
Accession number :
43899875
Full Text :
https://doi.org/10.3390/ijms10031104