Amyloid diseases are characterized by the accumulation of insoluble, -strand-rich aggregates. The underlying structural conversions are closely associated with cellular toxicity, but can also drive the formation of functional protein assemblies. In recent years, studies in the field of structural studies have revealed astonishing insights into the origins, mechanisms and implications of amyloid formation. Notably, high-resolution crystal structures of peptides in amyloid-like fibrils and prefibrillar oligomers have become available despite their challenging chemical nature. Nuclear magnetic resonance spectroscopy has revealed that dynamic local polymorphisms in the benign form of the prion protein affect the transformation into amyloid fibr...
Growth and deposition of amyloid fibrils, polymers of proteins with a cross beta-sheet structure, ar...
The ability of proteins to change their secondary structure and form insoluble fibrous material name...
peer reviewedThe deposition of proteins in the form of amyloid fibrils is the characteristic feature...
Amyloid diseases are characterized by the accumulation of insoluble, -strand-rich aggregates. The un...
Many neurodegenerative disorders, including Alzheimer's, Parkinson's and the prion diseases, are cha...
International audienceProtein aggregation into highly ordered, regularly repeated cross-β sheet stru...
Tissue deposition of normally soluble proteins, or their fragments, as insoluble amyloid fibrils cau...
This mini-review focuses on the processes and consequences of protein folding and misfolding. The la...
Understanding the structure–function relation-ships of amyloid fibrils has been hindered both by the...
This mini-review focuses on the processes and consequences of protein folding and misfolding. The la...
Amyloid protein aggregates are involved in ''protein-misfolding diseases'' of enormous social and ec...
Proteins are the engines and building blocks of life. They are long chains of amino acids, built up ...
Amyloids are structured aggregates formed by misfolded proteins. Research has shown 25+ diseases ass...
Amyloids are insoluble aggregates rich in β-structure that result from the self-assembly of polypept...
The recent high-resolution structures of amyloid fibrils show that the organization of peptide segme...
Growth and deposition of amyloid fibrils, polymers of proteins with a cross beta-sheet structure, ar...
The ability of proteins to change their secondary structure and form insoluble fibrous material name...
peer reviewedThe deposition of proteins in the form of amyloid fibrils is the characteristic feature...
Amyloid diseases are characterized by the accumulation of insoluble, -strand-rich aggregates. The un...
Many neurodegenerative disorders, including Alzheimer's, Parkinson's and the prion diseases, are cha...
International audienceProtein aggregation into highly ordered, regularly repeated cross-β sheet stru...
Tissue deposition of normally soluble proteins, or their fragments, as insoluble amyloid fibrils cau...
This mini-review focuses on the processes and consequences of protein folding and misfolding. The la...
Understanding the structure–function relation-ships of amyloid fibrils has been hindered both by the...
This mini-review focuses on the processes and consequences of protein folding and misfolding. The la...
Amyloid protein aggregates are involved in ''protein-misfolding diseases'' of enormous social and ec...
Proteins are the engines and building blocks of life. They are long chains of amino acids, built up ...
Amyloids are structured aggregates formed by misfolded proteins. Research has shown 25+ diseases ass...
Amyloids are insoluble aggregates rich in β-structure that result from the self-assembly of polypept...
The recent high-resolution structures of amyloid fibrils show that the organization of peptide segme...
Growth and deposition of amyloid fibrils, polymers of proteins with a cross beta-sheet structure, ar...
The ability of proteins to change their secondary structure and form insoluble fibrous material name...
peer reviewedThe deposition of proteins in the form of amyloid fibrils is the characteristic feature...