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Conformational Switching in PolyGln Amyloid Fibrils Resulting from a Single Amino Acid Insertion

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Mizuno,  Naoko
Mizuno, Naoko / Cellular and Membrane Trafficking, Max Planck Institute of Biochemistry, Max Planck Society;

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引用

Huang, R. K., Baxa, U., Aldrian, G., Ahmed, A. B., Wall, J. S., Mizuno, N., Antzutkin, O., Steven, A. C., & Kajava, A. V. (2014). Conformational Switching in PolyGln Amyloid Fibrils Resulting from a Single Amino Acid Insertion. BIOPHYSICAL JOURNAL, 106(10), 2134-2142. doi:10.1016/j.bpj.2014.03.047.


引用: https://hdl.handle.net/11858/00-001M-0000-0019-CE34-D
要旨
The established correlation between neurodegenerative disorders and intracerebral deposition of polyglutamine aggregates motivates attempts to better understand their fibrillar structure. We designed polyglutamines with a few lysines inserted to overcome the hindrance of extreme insolubility and two D-lysines to limit the lengths of beta-strands. One is 33 amino acids long (PolyQKd-33) and the other has one fewer glutamine (PolyQKd-32). Both form well-dispersed fibrils suitable for analysis by electron microscopy. Electron diffraction confirmed cross-beta structures in both fibrils. Remarkably, the deletion of just one glutamine residue from the middle of the peptide leads to substantially different amyloid structures. PolyQKd-32 fibrils are consistently 10-20% wider than PolyQKd-33, as measured by negative staining, cryo-electron microscopy, and scanning transmission electron microscopy. Scanning transmission electron microscopy analysis revealed that the PolyQKd-32 fibrils have 50% higher mass-per-length than PolyQKd-33. This distinction can be explained by a superpleated beta-structure model for PolyQKd-33 ;and a model with two beta-solenoid protofibrils for PolyQKd-32. These data provide evidence for beta-arch-containing structures in polyglutamine fibrils and open future possibilities for structure-based drug design.