Solution structures in aqueous SDS micelles of two amyloid beta peptides of A beta(1-28) mutated at the alpha-secretase cleavage site (K16E, K16F)
Data(s) |
01/06/2000
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Resumo |
NMR solution structures are reported for two mutants (K16E, K16F) of the soluble amyloid beta peptide A beta(1-28). The structural effects of these mutations of a positively charged residue to anionic and hydrophobic residues at the alpha-secretase cleavage site (Lys16-Leu17) were examined in the membrane-simulating solvent aqueous SDS micelles. Overall the three-dimensional structures were similar to that for the native A beta(1-28) sequence in that they contained an unstructured N-terminus and a helical C-terminus. These structural elements are similar to those seen in the corresponding regions of full-length A beta peptides A beta(1-40) and A beta(1-42), showing that the shorter peptides are valid model systems. The K16E mutation, which might be expected to stabilize the macrodipole of the helix, slightly increased the helix length (residues 13-24) relative to the K16F mutation, which shortened the helix to between residues 16 and 24. The observed sequence-dependent control over conformation in this region provides an insight into possible conformational switching roles of mutations in the amyloid precursor protein from which A beta peptides are derived. In addition, if conformational transitions from helix to random coil to sheet precede aggregation of A beta peptides in vivo, as they do in vitro, the conformation-inducing effects of mutations at Lys16 may also influence aggregation and fibril formation. (C) 2000 Academic Press. |
Identificador | |
Idioma(s) |
eng |
Publicador |
Academic Press |
Palavras-Chave | #Biochemistry & Molecular Biology #Biophysics #Cell Biology #Nmr #Amyloid Beta Peptide #Alzheimer's Disease #Conformation #Alzheimers-disease #Precursor Protein #Nmr-spectroscopy #Fibril Formation #Amino-acids #Amyloidogenicity #Membranes #Fragments #Residues #H-1-nmr #110399 Clinical Sciences not elsewhere classified #C1 #030201 Bioinorganic Chemistry |
Tipo |
Journal Article |