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Modulation of mitochondrial function and morphology by interaction of Omi/HtrA2 with the mitochondrial fusion factor OPA1
Authors:Nicole Kieper,Kira M. Holmströ  m,Dalila Ciceri,Hartwig Wolburg,Alexander J. Whitworth,Philipp J. Kahle,Rejko Krü  ger
Affiliation:a Center of Neurology and Hertie Institute for Clinical Brain Research, 72076 Tübingen, Germany
b Institute of Pathology, University of Tübingen, 72076 Tübingen, Germany
c Medical Research Council Centre for Developmental and Biomedical Genetics, University of Sheffield, Sheffield S10 2TN, UK
d Cell Death Regulation Laboratory, MRC Toxicology Unit, Leicester LE1 9HN, UK
Abstract:
Loss of Omi/HtrA2 function leads to nerve cell loss in mouse models and has been linked to neurodegeneration in Parkinson's and Huntington's disease. Omi/HtrA2 is a serine protease released as a pro-apoptotic factor from the mitochondrial intermembrane space into the cytosol. Under physiological conditions, Omi/HtrA2 is thought to be involved in protection against cellular stress, but the cytological and molecular mechanisms are not clear. Omi/HtrA2 deficiency caused an accumulation of reactive oxygen species and reduced mitochondrial membrane potential. In Omi/HtrA2 knockout mouse embryonic fibroblasts, as well as in Omi/HtrA2 silenced human HeLa cells and Drosophila S2R+ cells, we found elongated mitochondria by live cell imaging. Electron microscopy confirmed the mitochondrial morphology alterations and showed abnormal cristae structure. Examining the levels of proteins involved in mitochondrial fusion, we found a selective up-regulation of more soluble OPA1 protein. Complementation of knockout cells with wild-type Omi/HtrA2 but not with the protease mutant [S306A]Omi/HtrA2 reversed the mitochondrial elongation phenotype and OPA1 alterations. Finally, co-immunoprecipitation showed direct interaction of Omi/HtrA2 with endogenous OPA1. Thus, we show for the first time a direct effect of loss of Omi/HtrA2 on mitochondrial morphology and demonstrate a novel role of this mitochondrial serine protease in the modulation of OPA1. Our results underscore a critical role of impaired mitochondrial dynamics in neurodegenerative disorders.
Keywords:ANT, adenine nucleotide translocator   Drp1, dynamin-related protein 1   Fis1, mitochondrial fission 1 protein   Hsp90, heat shock protein 90   HtrA2, high temperature requirement protein A2   KO, knockout   MEF, mouse embryonic fibroblast   Mfn2, mitofusin 2   MMP, mitochondrial membrane potential   PBS, phosphate-buffered saline   PD, Parkinson's disease   ROS, reactive oxygen species   SD, standard deviation   SEM, standard error of the mean   VDAC1, voltage dependent anion channel 1   WT, wild-type
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