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Cu/Zn superoxide dismutase forms amyloid fibrils under near-physiological quiescent conditions: The roles of disulfide bonds and effects of denaturant

ACS Chemical Neuroscience. 2017; 
M. Ashhar I. Khan, Michal Respondek, Sven Kjellstrom, Shashank Deep, Sara Linse, and Mikael Akke
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Plasmid DNA Preparation The plasmids were designed as described18 and obtained from GenScript USA, Inc. All constructs used herein are based on the well-established pseudowild type variant of SOD1 (pwt-SOD1), which is a quadruple point mutant of human wild-type SOD1: C6A/F50E/G51E/C111A; the C to A mutations ensure that aberrant disulfide linkages cannot form and the F50E and G51E mutations introduce charged groups at the dimer interface, thereby making the protein monomeric Get A Quote

摘要

Cu/Zn superoxide dismutase (SOD1) forms intracellular aggregates that are pathological indicators of amyotrophic lateral sclerosis. A large body of research indicates that the entry point to aggregate formation is a monomeric, metal-ion free (apo), and disulfidereduced species. Fibril formation by SOD1 in vitro has typically been reported only for harsh solvent conditions or mechanical agitation. Here we show that monomeric apoSOD1 in the disulfide-reduced state forms fibrillar aggregates under near-physiological quiescent conditions. Monomeric apo-SOD1 with an intact intramolecular disulfide bond is highly resistant to aggregation under the same conditions. A cysteine-free variant of SOD1 exhibits fibrillizati... More

关键词

amyotrophic lateral sclerosis, disulfide reduction, ThT fluorescence, protein aggregation, protein unfolding, transmission electron microscopy