Negative regulation of mitochondrial VDAC channels by C-Raf kinase

<p>Abstract</p> <p>Background</p> <p>Growth of cancer cells results from the disturbance of positive and negative growth control mechanisms and the prolonged survival of these genetically altered cells due to the failure of cellular suicide programs. Genetic and biochem...

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Main Authors: Benz Roland, Troppmair Jakob, Le Mellay Véronique, Rapp Ulf R
Format: Article
Language:English
Published: BMC 2002-06-01
Series:BMC Cell Biology
Online Access:http://www.biomedcentral.com/1471-2121/3/14
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spelling doaj-e4b2a281a1714b27a2b416103c868efa2020-11-24T21:40:39ZengBMCBMC Cell Biology1471-21212002-06-01311410.1186/1471-2121-3-14Negative regulation of mitochondrial VDAC channels by C-Raf kinaseBenz RolandTroppmair JakobLe Mellay VéroniqueRapp Ulf R<p>Abstract</p> <p>Background</p> <p>Growth of cancer cells results from the disturbance of positive and negative growth control mechanisms and the prolonged survival of these genetically altered cells due to the failure of cellular suicide programs. Genetic and biochemical approaches have identified Raf family serine/threonine kinases B-Raf and C-Raf as major mediators of cell survival. C-Raf cooperates with Bcl-2/Bcl-X<sub>L</sub> in suppression of apoptosis by a mechanism that involves targeting of C-Raf to the outer mitochondrial membrane and inactivation of the pro-apoptotic protein Bad. However, apoptosis suppression by C-Raf also occurs in cells lacking expression of Bad or Bcl-2.</p> <p>Results</p> <p>Here we show that even in the absence of Bcl-2/Bcl-X<sub>L</sub>, mitochondria-targeted C-Raf inhibits cytochrome c release and caspase activation induced by growth factor withdrawal. To clarify the mechanism of Bcl-2 independent survival control by C-Raf at the mitochondria a search for novel mitochondrial targets was undertaken that identified voltage-dependent anion channel (VDAC), a mitochondrial protein (porin) involved in exchange of metabolites for oxidative phosphorylation. C-Raf forms a complex with VDAC <it>in vivo</it> and blocks reconstitution of VDAC channels in planar bilayer membranes <it>in vitro.</it></p> <p>Conclusion</p> <p>We propose that this interaction may be responsible for the Raf-induced inhibition of cytochrome c release from mitochondria in growth factor starved cells. Moreover, C-Raf kinase-induced VDAC inhibition may regulate the metabolic function of mitochondria and mediate the switch to aerobic glycolysis that is common to cancer cells.</p> http://www.biomedcentral.com/1471-2121/3/14
collection DOAJ
language English
format Article
sources DOAJ
author Benz Roland
Troppmair Jakob
Le Mellay Véronique
Rapp Ulf R
spellingShingle Benz Roland
Troppmair Jakob
Le Mellay Véronique
Rapp Ulf R
Negative regulation of mitochondrial VDAC channels by C-Raf kinase
BMC Cell Biology
author_facet Benz Roland
Troppmair Jakob
Le Mellay Véronique
Rapp Ulf R
author_sort Benz Roland
title Negative regulation of mitochondrial VDAC channels by C-Raf kinase
title_short Negative regulation of mitochondrial VDAC channels by C-Raf kinase
title_full Negative regulation of mitochondrial VDAC channels by C-Raf kinase
title_fullStr Negative regulation of mitochondrial VDAC channels by C-Raf kinase
title_full_unstemmed Negative regulation of mitochondrial VDAC channels by C-Raf kinase
title_sort negative regulation of mitochondrial vdac channels by c-raf kinase
publisher BMC
series BMC Cell Biology
issn 1471-2121
publishDate 2002-06-01
description <p>Abstract</p> <p>Background</p> <p>Growth of cancer cells results from the disturbance of positive and negative growth control mechanisms and the prolonged survival of these genetically altered cells due to the failure of cellular suicide programs. Genetic and biochemical approaches have identified Raf family serine/threonine kinases B-Raf and C-Raf as major mediators of cell survival. C-Raf cooperates with Bcl-2/Bcl-X<sub>L</sub> in suppression of apoptosis by a mechanism that involves targeting of C-Raf to the outer mitochondrial membrane and inactivation of the pro-apoptotic protein Bad. However, apoptosis suppression by C-Raf also occurs in cells lacking expression of Bad or Bcl-2.</p> <p>Results</p> <p>Here we show that even in the absence of Bcl-2/Bcl-X<sub>L</sub>, mitochondria-targeted C-Raf inhibits cytochrome c release and caspase activation induced by growth factor withdrawal. To clarify the mechanism of Bcl-2 independent survival control by C-Raf at the mitochondria a search for novel mitochondrial targets was undertaken that identified voltage-dependent anion channel (VDAC), a mitochondrial protein (porin) involved in exchange of metabolites for oxidative phosphorylation. C-Raf forms a complex with VDAC <it>in vivo</it> and blocks reconstitution of VDAC channels in planar bilayer membranes <it>in vitro.</it></p> <p>Conclusion</p> <p>We propose that this interaction may be responsible for the Raf-induced inhibition of cytochrome c release from mitochondria in growth factor starved cells. Moreover, C-Raf kinase-induced VDAC inhibition may regulate the metabolic function of mitochondria and mediate the switch to aerobic glycolysis that is common to cancer cells.</p>
url http://www.biomedcentral.com/1471-2121/3/14
work_keys_str_mv AT benzroland negativeregulationofmitochondrialvdacchannelsbycrafkinase
AT troppmairjakob negativeregulationofmitochondrialvdacchannelsbycrafkinase
AT lemellayveronique negativeregulationofmitochondrialvdacchannelsbycrafkinase
AT rappulfr negativeregulationofmitochondrialvdacchannelsbycrafkinase
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