Amyloidogenic peptides are well known for their involvement in diseases such as type 2 diabetes and Alzheimer's disease. However, more recently, amyloid fibrils have been shown to provide scaffolding and protection as functional materials in a range of organisms from bacteria to humans. These roles highlight the incredible tensile strength of the cross-β amyloid architecture. Many amino acid sequences are able to self-assemble to form amyloid with a cross-β core. Here we describe our recent advances in understanding how sequence contributes to amyloidogenicity and structure. For example, we describe penta- and hexapeptides that assemble to form different morphologies; a 12mer peptide that forms fibrous crystals; and an eight-residue peptide...
Artificial self-assemblies are known to fold into amyloid-like fibrillar structures with properties ...
Determining the structural origins of amyloid fibrillation is essential for understanding both the p...
Determining the structural origins of amyloid fibrillation is essential for understanding both the p...
This journal is © The Royal Society of Chemistry 2014Self-assembling amyloid-like peptides and prote...
© 2012 Dr. Marie N. BongiovanniThe natural ability of biological molecules to self-assemble provides...
Many peptides self-assemble to form amyloid fibrils. We previously explored the sequence propensity ...
Amyloid fibrils are highly ordered β-sheet structures that are formed from a variety of proteins in ...
Self-assembled peptide and protein amyloid nanostructures have traditionally been considered only as...
Amyloid fibril formation is associated with misfolding diseases, as well as fulfilling a functional ...
A number of short peptides and larger proteins are able to self-assemble to form cross-b amyloid-lik...
peer reviewedAmyloidogenic model peptides are invaluable for investigating assembly mechanisms in di...
Protein deposition as amyloid fibrils underlies more than twenty severely debilitating human disorde...
AbstractBackground: Conformational alteration and fibril formation of proteins have a key role in a ...
Data for article: Xingqing Xiao, Alicia S Robang, Sudeep Sarma, Justin V Le, Michael E Helmicki,...
Cataloged from PDF version of article.Amyloid peptides are important components in many degenerative...
Artificial self-assemblies are known to fold into amyloid-like fibrillar structures with properties ...
Determining the structural origins of amyloid fibrillation is essential for understanding both the p...
Determining the structural origins of amyloid fibrillation is essential for understanding both the p...
This journal is © The Royal Society of Chemistry 2014Self-assembling amyloid-like peptides and prote...
© 2012 Dr. Marie N. BongiovanniThe natural ability of biological molecules to self-assemble provides...
Many peptides self-assemble to form amyloid fibrils. We previously explored the sequence propensity ...
Amyloid fibrils are highly ordered β-sheet structures that are formed from a variety of proteins in ...
Self-assembled peptide and protein amyloid nanostructures have traditionally been considered only as...
Amyloid fibril formation is associated with misfolding diseases, as well as fulfilling a functional ...
A number of short peptides and larger proteins are able to self-assemble to form cross-b amyloid-lik...
peer reviewedAmyloidogenic model peptides are invaluable for investigating assembly mechanisms in di...
Protein deposition as amyloid fibrils underlies more than twenty severely debilitating human disorde...
AbstractBackground: Conformational alteration and fibril formation of proteins have a key role in a ...
Data for article: Xingqing Xiao, Alicia S Robang, Sudeep Sarma, Justin V Le, Michael E Helmicki,...
Cataloged from PDF version of article.Amyloid peptides are important components in many degenerative...
Artificial self-assemblies are known to fold into amyloid-like fibrillar structures with properties ...
Determining the structural origins of amyloid fibrillation is essential for understanding both the p...
Determining the structural origins of amyloid fibrillation is essential for understanding both the p...