Amyloid fibril formation requires a chemically discriminating nucleation event: studies of an amyloidogenic sequence from the bacterial protein OsmB.
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[1] J. Bandekar,et al. Vibrational spectroscopy and conformation of peptides, polypeptides, and proteins. , 1986, Advances in protein chemistry.
[2] P. Lansbury. In pursuit of the molecular structure of amyloid plaque: new technology provides unexpected and critical information. , 1992, Biochemistry.
[3] Cooper Jh. Selective amyloid staining as a function of amyloid composition and structure. Histochemical analysis of the alkaline Congo red, standardized toluidine blue, and iodine methods. , 1974 .
[4] J. Hofrichter,et al. Sickle cell hemoglobin polymerization. , 1990, Advances in protein chemistry.
[5] R. L. Baldwin,et al. Unusually stable helix formation in short alanine-based peptides. , 1989, Proceedings of the National Academy of Sciences of the United States of America.
[6] T. Niewold,et al. Enhancement of amyloid induction by amyloid fibril fragments in hamster. , 1987, Laboratory investigation; a journal of technical methods and pathology.
[7] G. Feher,et al. On the crystallization of proteins. , 1978, Journal of molecular biology.
[8] J. Reed,et al. Aggregation and secondary structure of synthetic amyloid βA4 peptides of Alzheimer's disease , 1991 .
[9] R. Potts,et al. Secondary structural analysis of two recombinant murine proteins, interleukins 1 alpha and 1 beta: is infrared spectroscopy sufficient to assign structure? , 1992, Biochemistry.
[10] A. Gotto,et al. Interaction of an apolipoprotein (apoLP-alanine) with phosphatidylcholine. , 1973, Biochemistry.
[11] D. Selkoe,et al. Targeting of cell-surface β-amyloid precursor protein to lysosomes: alternative processing into amyloid-bearing fragments , 1992, Nature.
[12] E. Kaiser,et al. Color test for detection of free terminal amino groups in the solid-phase synthesis of peptides. , 1970, Analytical biochemistry.
[13] G. Glenner,et al. Alzheimer's disease: Initial report of the purification and characterization of a novel cerebrovascular amyloid protein , 1984 .
[14] K. Higuchi,et al. Kinetic analysis of amyloid fibril polymerization in vitro. , 1991, Laboratory investigation; a journal of technical methods and pathology.
[15] S. Prusiner,et al. Prions and prion proteins 1 , 1991, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[16] B. Berne. Interpretation of the light scattering from long rods. , 1974, Journal of molecular biology.
[17] H. Scheraga,et al. Structure of beta-sheets. Origin of the right-handed twist and of the increased stability of antiparallel over parallel sheets. , 1982, Journal of molecular biology.
[18] J. Pettegrew,et al. Quantitative evaluation of congo red binding to amyloid-like proteins with a beta-pleated sheet conformation. , 1989, The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society.
[19] G. Fasman,et al. Computed circular dichroism spectra for the evaluation of protein conformation. , 1969, Biochemistry.
[20] C. Masters,et al. Amyloid plaque core protein in Alzheimer disease and Down syndrome. , 1985, Proceedings of the National Academy of Sciences of the United States of America.
[21] K. Grzeschik,et al. The precursor of Alzheimer's disease amyloid A4 protein resembles a cell-surface receptor , 1987, Nature.
[22] P. Y. Chou,et al. Prediction of the secondary structure of proteins from their amino acid sequence. , 2006 .
[23] C. Cotman,et al. Assembly and aggregation properties of synthetic Alzheimer's A4/beta amyloid peptide analogs. , 1992, The Journal of biological chemistry.
[24] P. Lansbury,et al. Molecular determinants of amyloid deposition in Alzheimer's disease: conformational studies of synthetic beta-protein fragments. , 1990, Biochemistry.
[25] R. Doolittle,et al. A simple method for displaying the hydropathic character of a protein. , 1982, Journal of molecular biology.
[26] J. Tamada,et al. Kinetics of insulin aggregation in aqueous solutions upon agitation in the presence of hydrophobic surfaces. , 1991, Proceedings of the National Academy of Sciences of the United States of America.
[27] R G Griffin,et al. An unusual peptide conformation may precipitate amyloid formation in Alzheimer's disease: application of solid-state NMR to the determination of protein secondary structure. , 1991, Biochemistry.
[28] J. Jung,et al. Sequence of an osmotically inducible lipoprotein gene , 1989, Journal of bacteriology.
[29] W. Gratzer,et al. Formation and structure of gels and fibrils from glucagon. , 1969, European journal of biochemistry.
[30] G. Multhaup,et al. Identification, transmembrane orientation and biogenesis of the amyloid A4 precursor of Alzheimer's disease. , 1988, The EMBO journal.
[31] J. Hofrichter,et al. Kinetics and mechanism of deoxyhemoglobin S gelation: a new approach to understanding sickle cell disease. , 1974, Proceedings of the National Academy of Sciences of the United States of America.