Access the full text.
Sign up today, get DeepDyve free for 14 days.
S. Lovell, Ian Davis, W. Arendall, P. Bakker, J. Word, M. Prisant, J. Richardson, D. Richardson (2003)
Structure validation by Cα geometry: ϕ,ψ and Cβ deviationProteins: Structure, 50
Margaret Sunde, Colin Blake (1998)
From the globular to the fibrous state: protein structure and structural conversion in amyloid formationQuarterly Reviews of Biophysics, 31
L. Serpell, Paul Fraser, Margaret Sunde (1999)
X-ray fiber diffraction of amyloid fibrils.Methods in enzymology, 309
S. and, E. Bernstein (1996)
Aromatic van der Waals Clusters: Structure and NonrigidityThe Journal of Physical Chemistry, 100
M. Sunde, L. Serpell, M. Bartlam, P. Fraser, M. Pepys, C. Blake (1997)
Common core structure of amyloid fibrils by synchrotron X-ray diffraction.Journal of molecular biology, 273 3
Ytocii EMISTRt, C. IIENNE1t (1968)
X-RAY DIFFRACTION STUDIES ON AMYLOID FILAMENTSJournal of Histochemistry and Cytochemistry, 16
R. Diaz-Avalos, C. Long, E. Fontano, M. Balbirnie, Robert Grothe, D. Eisenberg, D. Caspar (2003)
Cross-beta order and diversity in nanocrystals of an amyloid-forming peptide.Journal of molecular biology, 330 5
G. Westermark, U. Engström, P. Westermark (1992)
The N-terminal segment of protein AA determines its fibrillogenic property.Biochemical and biophysical research communications, 182 1
Richard Gillard, F. Raymo, J. Stoddart (1997)
Controlling Self‐AssemblyChemistry: A European Journal, 3
M. Reches, E. Gazit (2003)
Casting Metal Nanowires Within Discrete Self-Assembled Peptide NanotubesScience, 300
C. Dobson (2001)
The structural basis of protein folding and its links with human disease.Philosophical transactions of the Royal Society of London. Series B, Biological sciences, 356 1406
Ashok Shetty, Jinshan Zhang, Jeffrey Moore (1996)
Aromatic π-Stacking in Solution as Revealed through the Aggregation of Phenylacetylene MacrocyclesJournal of the American Chemical Society, 118
Konstantinos Tenidis, Michaela Waldner, J. Bernhagen, W. Fischle, Michael Bergmann, Marco Weber, Marco Weber, Marie-Luise Merkle, W. Voelter, H. Brunner, A. Kapurniotu (2000)
Identification of a penta- and hexapeptide of islet amyloid polypeptide (IAPP) with amyloidogenic and cytotoxic properties.Journal of molecular biology, 295 4
Waltteri Hosia, N. Bark, E. Liepinsh, A. Tjernberg, B. Persson, D. Hallén, J. Thyberg, J. Johansson, L. Tjernberg (2004)
Folding into a β-Hairpin Can Prevent Amyloid Fibril Formation†Biochemistry, 43
Susan Jones, J. Manning, N. Kad, S. Radford (2003)
Amyloid-forming peptides from beta2-microglobulin-Insights into the mechanism of fibril formation in vitro.Journal of molecular biology, 325 2
N. Kannan, S. Vishveshwara (2000)
Aromatic clusters: a determinant of thermal stability of thermophilic proteins.Protein engineering, 13 11
A. Geddes, K. Parker, E. Atkins, E. Beighton (1968)
“Cross-β” conformation in proteins☆Journal of Molecular Biology, 32
A. Naito, M. Kamihira, R. Inoue, H. Saitô (2004)
Structural diversity of amyloid fibril formed in human calcitonin as revealed by site‐directed 13C solid‐state NMR spectroscopyMagnetic Resonance in Chemistry, 42
C. Soto, E. Sigurdsson, L. Morelli, R. Kumar, E. Castaño, E. Castaño, B. Frangione (1998)
β-sheet breaker peptides inhibit fibrillogenesis in a rat brain model of amyloidosis: Implications for Alzheimer's therapyNature Medicine, 4
N. Hirota-Nakaoka, K. Hasegawa, H. Naiki, Y. Goto (2003)
Dissolution of beta2-microglobulin amyloid fibrils by dimethylsulfoxide.Journal of biochemistry, 134 1
M. Paz, L. Serrano (2003)
Sequence determinants of amyloid fibril formationProceedings of the National Academy of Sciences of the United States of America, 101
M. Findeis, Gary Musso, Christopher Arico-Muendel, Howard Benjamin, A. Hundal, Jung-Ja Lee, J. Chin, Michael Kelley, James Wakefield, Neil Hayward, Susan Molineaux (1999)
Modified-peptide inhibitors of amyloid beta-peptide polymerization.Biochemistry, 38 21
C. Wurth, N. Guimard, M. Hecht (2002)
Mutations that reduce aggregation of the Alzheimer's Abeta42 peptide: an unbiased search for the sequence determinants of Abeta amyloidogenesis.Journal of molecular biology, 319 5
G. McGaughey, M. Gagne, A. Rappé (1998)
pi-Stacking interactions. Alive and well in proteins.The Journal of biological chemistry, 273 25
D. Zanuy, Y. Porat, E. Gazit, R. Nussinov (2004)
Peptide sequence and amyloid formation; molecular simulations and experimental study of a human islet amyloid polypeptide fragment and its analogs.Structure, 12 3
P. Sikorski, E. Atkins, L. Serpell (2003)
Structure and texture of fibrous crystals formed by Alzheimer's abeta(11-25) peptide fragment.Structure, 11 8
(2003)
Structure (Cambridge, MA, U.S
M. Reches, Y. Porat, E. Gazit (2002)
Amyloid Fibril Formation by Pentapeptide and Tetrapeptide Fragments of Human Calcitonin*The Journal of Biological Chemistry, 277
C. Claessens, J. Stoddart (1997)
π–π INTERACTIONS IN SELF‐ASSEMBLYJournal of Physical Organic Chemistry, 10
Ronit Azriel, E. Gazit (2001)
Analysis of the Minimal Amyloid-forming Fragment of the Islet Amyloid PolypeptideThe Journal of Biological Chemistry, 276
J. Jimenez, J. Guijarro, E. Orlova, J. Zurdo, C. Dobson, M. Sunde, H. Saibil (1999)
Cryo‐electron microscopy structure of an SH3 amyloid fibril and model of the molecular packingThe EMBO Journal, 18
C. Hunter (1993)
Arene—Arene Interactions: Electrostatic or Charge Transfer?Angewandte Chemie, 32
W. Esler, E. Stimson, J. Ghilardi, Y. Lu, A. Felix, H. Vinters, P. Mantyh, Jonathan Lee, J. Maggio (1996)
Point Substitution in the Central Hydrophobic Cluster of a Human β-Amyloid Congener Disrupts Peptide Folding and Abolishes Plaque Competence†Biochemistry, 35
M. Waters (2002)
Aromatic interactions in model systems.Current opinion in chemical biology, 6 6
R. Kayed, J. Bernhagen, N. Greenfield, Khuloud Sweimeh, H. Brunner, W. Voelter, A. Kapurniotu (1999)
Conformational transitions of islet amyloid polypeptide (IAPP) in amyloid formation in vitro.Journal of molecular biology, 287 4
W. Astbury, S. Dickinson, K. Bailey (1935)
The X-ray interpretation of denaturation and the structure of the seed globulins.The Biochemical journal, 29 10
L. Tjernberg, J. Näslund, F. Lindqvist, J. Johansson, A. Karlström, J. Thyberg, L. Terenius, C. Nordstedt (1996)
Arrest of -Amyloid Fibril Formation by a Pentapeptide Ligand (*)The Journal of Biological Chemistry, 271
L. Tjernberg, Waltteri Hosia, N. Bark, J. Thyberg, J. Johansson (2002)
Charge Attraction and β Propensity Are Necessary for Amyloid Fibril Formation from Tetrapeptides*The Journal of Biological Chemistry, 277
Proceedings of the National Academy of Sciences – Unpaywall
Published: Jan 3, 2005
Read and print from thousands of top scholarly journals.
Already have an account? Log in
Bookmark this article. You can see your Bookmarks on your DeepDyve Library.
To save an article, log in first, or sign up for a DeepDyve account if you don’t already have one.
Copy and paste the desired citation format or use the link below to download a file formatted for EndNote
Access the full text.
Sign up today, get DeepDyve free for 14 days.
All DeepDyve websites use cookies to improve your online experience. They were placed on your computer when you launched this website. You can change your cookie settings through your browser.