Literature DB >> 20667836

Temporary sequestration of potassium by mitochondria in astrocytes.

Michael G Kozoriz1, John Church, Mark A Ozog, Christian C Naus, Claudia Krebs.   

Abstract

Increases in extracellular potassium concentration ([K(+)](o)), which can occur during neuronal activity and under pathological conditions such as ischemia, lead to a variety of potentially detrimental effects on neuronal function. Although astrocytes are known to contribute to the clearance of excess K(+)(o), the mechanisms are not fully understood. We examined the potential role of mitochondria in sequestering K(+) in astrocytes. Astrocytes were loaded with the fluorescent K(+) indicator PBFI and release of K(+) from mitochondria into the cytoplasm was examined after uncoupling the mitochondrial membrane potential with carbonyl cyanide m-chlorophenylhydrazone (CCCP). Under the experimental conditions employed, transient applications of elevated [K(+)](o) led to increases in K(+) within mitochondria, as assessed by increases in the magnitudes of cytoplasmic [K(+)] ([K(+)](i)) transients evoked by brief exposures to CCCP. When mitochondrial K(+) sequestration was impaired by prolonged application of CCCP, there was a robust increase in [K(+)](i) upon exposure to elevated [K(+)](o). Blockade of plasmalemmal K(+) uptake routes by ouabain, Ba(2+), or a mixture of voltage-activated K(+) channel inhibitors reduced K(+) uptake into mitochondria. Also, reductions in mitochondrial K(+) uptake occurred in the presence of mito-K(ATP) channel inhibitors. Rises in [K(+)](i) evoked by brief applications of CCCP following exposure to high [K(+)](o) were also reduced by gap junction blockers and in astrocytes isolated from connexin43-null mice, suggesting that connexins also play a role in K(+) uptake into astrocyte mitochondria. We conclude that mitochondria play a key role in K(+)(o) handling by astrocytes.

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Year:  2010        PMID: 20667836      PMCID: PMC2951184          DOI: 10.1074/jbc.M109.082073

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  77 in total

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5.  Involvement of mitochondrial K+ release and cellular efflux in ischemic and apoptotic neuronal death.

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7.  Array analysis of gene expression in connexin-43 null astrocytes.

Authors:  Dumitru A Iacobas; Marcia Urban-Maldonado; Sanda Iacobas; Eliana Scemes; David C Spray
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8.  Astrocytes contribute to regulation of extracellular calcium and potassium in the rat cerebral cortex during spreading depression.

Authors:  Xiao-Yuan Lian; Janet L Stringer
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10.  Increased apoptosis and inflammation after focal brain ischemia in mice lacking connexin43 in astrocytes.

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  17 in total

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Review 3.  Connexins in the Heart: Regulation, Function and Involvement in Cardiac Disease.

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Review 4.  Connexin 43 is an emerging therapeutic target in ischemia/reperfusion injury, cardioprotection and neuroprotection.

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Journal:  Pharmacol Ther       Date:  2015-06-11       Impact factor: 12.310

Review 5.  Gap junctions and hemichannels: communicating cell death in neurodevelopment and disease.

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6.  Vesicle-Based Sensors for Extracellular Potassium Detection.

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Review 7.  Mechanisms of spreading depolarization in vertebrate and insect central nervous systems.

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Review 8.  The mutual interplay of redox signaling and connexins.

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Review 9.  The Interplay between Dysregulated Ion Transport and Mitochondrial Architecture as a Dangerous Liaison in Cancer.

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10.  Connexin 43 impacts on mitochondrial potassium uptake.

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