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Tytuł pozycji:

Cross-beta order and diversity in nanocrystals of an amyloid-forming peptide.

Tytuł:
Cross-beta order and diversity in nanocrystals of an amyloid-forming peptide.
Autorzy:
Diaz-Avalos R; Institute of Molecular Biophysics, Florida State University, Tallahassee, FL 32306, USA. />Long C
Fontano E
Balbirnie M
Grothe R
Eisenberg D
Caspar DL
Źródło:
Journal of molecular biology [J Mol Biol] 2003 Jul 25; Vol. 330 (5), pp. 1165-75.
Typ publikacji:
Journal Article; Research Support, U.S. Gov't, P.H.S.
Język:
English
Imprint Name(s):
Publication: Amsterdam : Elsevier
Original Publication: 1959- : London : Academic Press
MeSH Terms:
Saccharomyces cerevisiae Proteins*
Amyloid/*chemistry
Peptides/*chemistry
Crystallography, X-Ray ; Electrons ; Fungal Proteins/chemistry ; Microscopy, Electron ; Peptide Termination Factors ; Polymorphism, Genetic ; Prions/chemistry ; Protein Conformation ; Water/chemistry ; X-Ray Diffraction
Grant Information:
NS 42221 United States NS NINDS NIH HHS
Substance Nomenclature:
0 (Amyloid)
0 (Fungal Proteins)
0 (Peptide Termination Factors)
0 (Peptides)
0 (Prions)
0 (SUP35 protein, S cerevisiae)
0 (Saccharomyces cerevisiae Proteins)
059QF0KO0R (Water)
Entry Date(s):
Date Created: 20030716 Date Completed: 20030825 Latest Revision: 20190710
Update Code:
20240104
DOI:
10.1016/s0022-2836(03)00659-4
PMID:
12860136
Czasopismo naukowe
The seven-residue peptide GNNQQNY from the N-terminal region of the yeast prion protein Sup35, which forms amyloid fibers, colloidal aggregates and highly ordered nanocrystals, provides a model system for characterizing the elusively protean cross-beta conformation. Depending on preparative conditions, orthorhombic and monoclinic crystals with similar lath-shaped morphology have been obtained. Ultra high-resolution (<0.5A spacing) electron diffraction patterns from single nanocrystals show that the peptide chains pack in parallel cross-beta columns with approximately 4.86A axial spacing. Mosaic striations 20-50 nm wide observed by electron microscopy indicate lateral size-limiting crystal growth related to amyloid fiber formation. Frequently obtained orthorhombic forms, with apparent space group symmetry P2(1)2(1)2(1), have cell dimensions ranging from /a/=22.7-21.2A, /b/=39.9-39.3A, /c/=4.89-4.86A for wet to dried states. Electron diffraction data from single nanocrystals, recorded in tilt series of still frames, have been mapped in reciprocal space. However, reliable integrated intensities cannot be obtained from these series, and dynamical electron diffraction effects present problems in data analysis. The diversity of ordered structures formed under similar conditions has made it difficult to obtain reproducible X-ray diffraction data from powder specimens; and overlapping Bragg reflections in the powder patterns preclude separated structure factor measurements for these data. Model protofilaments, consisting of tightly paired, half-staggered beta strands related by a screw axis, can be fit in the crystal lattices, but model refinement will require accurate structure factor measurements. Nearly anhydrous packing of this hydrophilic peptide can account for the insolubility of the crystals, since the activation energy for rehydration may be extremely high. Water-excluding packing of paired cross-beta peptide segments in thin protofilaments may be characteristic of the wide variety of anomalously stable amyloid aggregates.

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