Inhibition of the Mitochondrial Permeability Transition by Creatine Kinase Substrates

REQUIREMENT FOR MICROCOMPARTMENTATION*

  1. Theo Wallimann
  1. From the Institute of Cell Biology, Swiss Federal Institute of Technology, ETH-Hönggerberg, CH-8093 Zürich, Switzerland

Abstract

Mitochondria from transgenic mice, expressing enzymatically active mitochondrial creatine kinase in liver, were analyzed for opening of the permeability transition pore in the absence and presence of creatine kinase substrates but with no external adenine nucleotides added. In mitochondria from these transgenic mice, cyclosporin A-inhibited pore opening was delayed by creatine or cyclocreatine but not by β-guanidinopropionic acid. This observation correlated with the ability of these substrates to stimulate state 3 respiration in the presence of extramitochondrial ATP. The dependence of transition pore opening on calcium and magnesium concentration was studied in the presence and absence of creatine. If mitochondrial creatine kinase activity decreased (i.e. by omitting magnesium from the medium), protection of permeability transition pore opening by creatine or cyclocreatine was no longer seen. Likewise, when creatine kinase was added externally to liver mitochondria from wild-type mice that do not express mitochondrial creatine kinase in liver, no protective effect on pore opening by creatine and its analog was observed. All these findings indicate that mitochondrial creatine kinase activity located within the intermembrane and intercristae space, in conjunction with its tight functional coupling to oxidative phosphorylation, via the adenine nucleotide translocase, can modulate mitochondrial permeability transition in the presence of creatine. These results are of relevance for the design of creatine analogs for cell protection as potential adjuvant therapeutic tools against neurodegenerative diseases.

  • Abbreviations:
    CK
    creatine kinase
    ANT
    adenine nucleotide translocase
    Ap5A
    P1,P5-di(adenosine 5′)-pentaphosphate (an inhibitor of adenylate kinase)
    BB-CK
    cytosolic brain-type creatine kinase
    Cr
    creatine
    CsA
    cyclosporin A
    CyCr
    cyclocreatine
    FCCP
    carbonyl cyanidep-trifluoromethoxyphenylhydrazone
    GPA
    β-guanidinopropionic acid
    IMS
    intermembrane space
    MPT
    mitochondrial permeability transition
    mtCK
    mitochondrial creatine kinase
    PCr
    phosphocreatine
    Mops
    4-morpholinepropanesulfonic acid
    • Received August 26, 2002.
    • Revision received January 22, 2003.
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    This Article

    1. The Journal of Biological Chemistry 278, 17760-17766.
    1. All Versions of this Article:
      1. M208705200v1
      2. 278/20/17760 (most recent)

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