PLoS ONE · 2013 · 23 citations · 14 references
Signal RecognitionMolecular BiologyCytoskeletonAaa ClassRedox BiologyCellular PhysiologyOxidative StressRedox RegulatorKey Antioxidant EnzymeH2o2 LevelsCell SignalingCell PhysiologyBiochemistryNovel Feedback MechanismCell BiologyProtein PhosphorylationReductive StressSignal TransductionMitochondrial FunctionNatural SciencesVcp Atpase ActivityMedicineIntegral Component
Catalase is a key antioxidant enzyme that catalyzes the decomposition of hydrogen peroxide (H2O2) to water and oxygen, and it appears to shuttle between the cytoplasm and peroxisome via unknown mechanisms. Valosin-containing protein (VCP) belongs to the AAA class of ATPases and is involved in diverse cellular functions, e.g. cell cycle and protein degradation, etc. Here we show that VCP and PEX19, a protein essential for peroxisome biogenesis, interact with each other. Knockdown of either VCP or PEX19 resulted in a predominantly cytoplasmic redistribution of catalase, and loss of VCP ATPase activity also increased its cytoplasmic redistribution. Moreover, VCP knockdown decreased intracellular ROS levels in normal and H2O2-treated cells, and an oxidation-resistant VCP impaired the ROS-induced cytoplasmic redistribution of catalase. These observations reveal a novel feedback mechanism, in which VCP can sense H2O2 levels, and regulates them by controlling the localization of catalase.
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Miho Hirabayashi, Kiyoshi Inoue, Keiko Tanaka et al. · Cell Death and Differentiation · 2001 · 257 citations · Full text
Cytoplasmic Vacuoles, Neurodegenerative Diseases, Abnormal Protein Aggregates +10
Peroxisome Senescence in Human Fibroblasts
Julie E. Legakis, Jay I. Koepke, Chris Jedeszko et al. · Molecular Biology of the Cell · 2002 · 184 citations · Full text
Taeko Kobayashi, Keiko Tanaka, Kiyoshi Inoue et al. · Journal of Biological Chemistry · 2002 · 142 citations · Full text
Molecular Biology, P97/valosin-containing Protein, Cytoskeleton +24