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Thermal fluctuations of immature SOD1 lead to separate folding and misfolding pathways.

Ashok Sekhar | Jessica A O Rumfeldt | Helen R Broom | Colleen M Doyle | Guillaume Bouvignies | Elizabeth M Meiering | Lewis E Kay
eLife | 2015

Amyotrophic lateral sclerosis (ALS) is a progressive neurodegenerative disease involving cytotoxic conformations of Cu, Zn superoxide dismutase (SOD1). A major challenge in understanding ALS disease pathology has been the identification and atomic-level characterization of these conformers. Here, we use a combination of NMR methods to detect four distinct sparsely populated and transiently formed thermally accessible conformers in equilibrium with the native state of immature SOD1 (apoSOD1(2SH)). Structural models of two of these establish that they possess features present in the mature dimeric protein. In contrast, the other two are non-native oligomers in which the native dimer interface and the electrostatic loop mediate the formation of aberrant intermolecular interactions. Our results show that apoSOD1(2SH) has a rugged free energy landscape that codes for distinct kinetic pathways leading to either maturation or non-native association and provide a starting point for a detailed atomic-level understanding of the mechanisms of SOD1 oligomerization.

Pubmed ID: 26099300

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Associated grants

  • Agency: Canadian Institutes of Health Research, Canada

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Biological Magnetic Resonance Data Bank (BMRB) (tool)

RRID:SCR_002296

Public depository that collects, annotates, archives, and disseminates important spectral and quantitative data derived from nuclear magnetic resonance spectroscopic investigations of biological macromolecules and metabolites. Provides reference information and maintains a collection of NMR pulse sequences and computer software for biomolecular NMR.

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