Literature DB >> 18769039

Hypoxia increases activity of the BK-channel in the inner mitochondrial membrane and reduces activity of the permeability transition pore.

Yu Cheng1, Xiang Q Gu, Piotr Bednarczyk, Falk R Wiedemann, Gabriel G Haddad, Detlef Siemen.   

Abstract

Hypoxia can cause severe damage to cells by initiating signaling cascades that lead to cell death. A cellular oxygen sensor, other than the respiratory chain, might exist in sensitive components of these signaling cascades. Recently, we found evidence that mitochondrial ion channels are sensitive to low levels of oxygen. We therefore studied the effects of hypoxia on the mitochondrial BK-channel (mtBK), on the mitochondrial permeability transition pore (PTP), and on their possible interaction. Using single-channel patch-clamp techniques we found that hypoxia inhibited the PTP but substantially increased the mtBK activity of mitoplasts from rat liver and astrocytes. Experiments measuring the mitochondrial membrane potential of intact rat brain mitochondria (using the fluorescence dye safranine O) during hypoxia exhibited an increased Ca(2+)-retention capacity implying an impaired opening of the PTP. We also found a reduced Ca(2+)-retention capacity with 100 nM iberiotoxin, a selective inhibitor of BK-channels. We therefore conclude that there is interaction between the mtBK and the PTP in a way that an open mtBK keeps the PTP closed. Thus, the response of mitochondrial ion channels to hypoxia could be interpreted as anti-apoptotic. Copyright 2008 S. Karger AG, Basel.

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Year:  2008        PMID: 18769039     DOI: 10.1159/000149790

Source DB:  PubMed          Journal:  Cell Physiol Biochem        ISSN: 1015-8987


  32 in total

Review 1.  Physiology of potassium channels in the inner membrane of mitochondria.

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2.  Modeling of Mitochondrial Donut Formation.

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3.  A protein interaction network for the large conductance Ca(2+)-activated K(+) channel in the mouse cochlea.

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4.  Closure of mitochondrial potassium channels favors opening of the Tl(+)-induced permeability transition pore in Ca(2+)-loaded rat liver mitochondria.

Authors:  Sergey M Korotkov; Irina V Brailovskaya; Anton R Shumakov; Larisa V Emelyanova
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5.  Calpeptin, not calpain, directly inhibits an ion channel of the inner mitochondrial membrane.

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7.  Low-Dose Ethanol Preconditioning Protects Against Oxygen-Glucose Deprivation/Reoxygenation-Induced Neuronal Injury By Activating Large Conductance, Ca2+-Activated K+ Channels In Vitro.

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8.  The effect of atp-dependent potassium uptake on mitochondrial functions under acute hypoxia.

Authors:  Olga Akopova; Valentina Nosar; Bronislav Gavenauskas; Larissa Bratus; Liudmila Kolchinskaya; Iryna Mankovska; Vadim Sagach
Journal:  J Bioenerg Biomembr       Date:  2016-01-06       Impact factor: 2.945

9.  BK channels regulate sinoatrial node firing rate and cardiac pacing in vivo.

Authors:  Michael H Lai; Yuejin Wu; Zhan Gao; Mark E Anderson; Julie E Dalziel; Andrea L Meredith
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10.  MaxiK channel interactome reveals its interaction with GABA transporter 3 and heat shock protein 60 in the mammalian brain.

Authors:  H Singh; M Li; L Hall; S Chen; S Sukur; R Lu; A Caputo; A L Meredith; E Stefani; L Toro
Journal:  Neuroscience       Date:  2016-01-07       Impact factor: 3.590

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