4.8 Article

Structure of the toxic core of α-synuclein from invisible crystals

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NATURE
卷 525, 期 7570, 页码 486-+

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NATURE PUBLISHING GROUP
DOI: 10.1038/nature15368

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资金

  1. National Institute of General Medical Sciences from the National Institutes of Health [P41 GM103403]
  2. DOE Office of Science by Argonne National Laboratory [DE-AC02-06CH11357]
  3. NIH [GM095887, GM102520]
  4. Office of Science, Department of Energy (DOE) [DE-AC02-05CH11231]
  5. US Department of Energy Office of Science, Office of Biological and Environmental Research program [DE-FC02-02ER63421]
  6. National Science Foundation [MCB-0958111]
  7. National Institutes of Health [1R01-AG029430]
  8. Alzheimer's Disease Research (ADRC) at UCLA [NIH-AG016570]
  9. HHMI
  10. Giannini Foundation
  11. Div Of Molecular and Cellular Bioscience
  12. Direct For Biological Sciences [0958111] Funding Source: National Science Foundation

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The protein alpha-synuclein is the main component of Lewy bodies, the neuron-associated aggregates seen in Parkinson disease and other neurodegenerative pathologies. An 11-residue segment, which we term NACore, appears to be responsible for amyloid formation and cytotoxicity of human alpha-synuclein. Here we describe crystals of NACore that have dimensions smaller than the wavelength of visible light and thus are invisible by optical microscopy. As the crystals are thousands of times too small for structure determination by synchrotron X-ray diffraction, we use micro-electron diffraction to determine the structure at atomic resolution. The 1.4 angstrom resolution structure demonstrates that this method can determine previously unknown protein structures and here yields, to our knowledge, the highest resolution achieved by any cryo-electron microscopy method to date. The structure exhibits protofibrils built of pairs of face-to-face b-sheets. X-ray fibre diffraction patterns show the similarity of NACore to toxic fibrils of full-length alpha-synuclein. The NACore structure, together with that of a second segment, inspires a model for most of the ordered portion of the toxic, full-length alpha-synuclein fibril, presenting opportunities for the design of inhibitors of alpha-synuclein fibrils.

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