Activation of Mitochondrial Complex II-Dependent Respiration Is Beneficial for alpha-Synucleinopathies

作者:Froehlich Christina; Zschiebsch Katja; Groeger Victoria; Paarmann Kristin; Steffen Johannes; Thurm Christoph; Schropp Eva Maria; Bruening Thomas; Gellerich Frank; Radloff Martin; Schwabe Rainer; Lachmann Ingolf; Krohn Markus; Ibrahim Saleh; Pahnke Jens*
来源:Molecular Neurobiology, 2016, 53(7): 4728-4744.
DOI:10.1007/s12035-015-9399-4

摘要

Parkinson's disease and dementia with Lewy bodies are major challenges in research and clinical medicine world-wide and contribute to the most common neurodegenerative disorders. Previously, specific mitochondrial polymorphisms have been found to enhance clearance of amyloid-beta from the brain of APP-transgenic mice leading to beneficial clinical outcome. It has been discussed whether specific mitochondrial alterations contribute to disease progression or even prevent toxic peptide deposition, as seen in many neurodegenerative diseases. Here, we investigated alpha-synuclein-transgenic C57BL/6J mice with the A30P mutation, and a novel A30P C57BL/6J mouse model with three mitochondrial DNA polymorphisms in the ND3, COX3 and mtRNA(Arg) genes, as found in the inbred NOD/LtJ mouse strain. We were able to detect that the new model has increased mitochondrial complex II-respiration which occurs in parallel to neuronal loss and improved motor performance, although it exhibits higher amounts of high molecular weight species of alpha-synuclein. High molecular weight aggregates of different peptides are controversially discussed in the light of neurodegeneration. A favourable hypothesis states that high molecular weight species are protective and of minor importance for the pathogenesis of neurodegenerative disorders as compared to the extreme neurotoxic monomers and oligomers. Summarising, our results point to a potentially protective and beneficial effect of specific mitochondrial polymorphisms which cause improved mitochondrial complex II-respiration in alpha-synucleinopathies, an effect that could be exploited further for pharmaceutical interventions.

  • 出版日期2016-9