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Consequences of variability in α-synuclein fibril structure on strain biology.

Sara A M HolecSamantha L LiuAmanda L Woerman
Published in: Acta neuropathologica (2022)
Synucleinopathies are a group of clinically and neuropathologically distinct protein misfolding diseases caused by unique α-synuclein conformations, or strains. While multiple atomic resolution cryo-electron microscopy structures of α-synuclein fibrils are now deposited in Protein Data Bank, significant gaps in the biological consequences arising from each conformation have yet to be unraveled. Mutations in the α-synuclein gene (SNCA), cofactors, and the solvation environment contribute to the formation and maintenance of each disease-causing strain. This review highlights the impact of each of these factors on α-synuclein misfolding and discusses the implications of the resulting structural variability on therapeutic development.
Keyphrases
  • electron microscopy
  • high resolution
  • molecular dynamics simulations
  • protein protein
  • binding protein
  • molecular dynamics
  • copy number
  • big data
  • amino acid
  • small molecule
  • deep learning
  • data analysis