Proteins possessing very different structures, or even no structure, form amyloid fibrils that are very similar in internal structure. This suggests that the mechanisms by which amyloid fibrils form might be very similar, irrespective of whether the fibrils are associated with disease or with normal cellular function, or even if they have no physiological importance. In this context, it is important to have a model protein system whose amyloid fibril formation is robust in its reproducibility, which can reveal the fundamentals of the amyloid fibril reaction that may be applicable to all proteins. In this study, the aggregation mechanism of amyloid fibril formation by chain B of the heterodimeric protein monellin has been elucidated in detai...
Protein oligomers have been implicated as toxic agents in a wide range of amyloid-related diseases. ...
The inverse scattering problem is based on the scattering theory in physics, where measured data suc...
One and the same protein can self-assemble into amyloid fibrils with different morphologies. The phe...
AbstractThe formation of protein fibrils, and in particular amyloid fibrils, underlies many human di...
Self-assembly of misfolded proteins into ordered fibrillar aggregates known as amyloid results in nu...
AbstractOne and the same protein can self-assemble into amyloid fibrils with different morphologies....
Peptides and proteins possess an inherent tendency to self-assemble, prompting the formation of amyl...
Intermolecular noncovalent interactions between protein molecules result in the formation of a wide ...
Understanding the earliest molecular events during nucleation of the amyloid aggregation cascade is ...
Assembly and deposition of insoluble amyloid fibrils with a distinctive cross-β-sheet structure is t...
Despite the complexity and the specificity of the amino acid code, a variety of peptides and protein...
The mechanism of amyloid fibril formation by proteins has been classically described by the nucleati...
More than twenty types of proteins can adopt misfolded conforma-tions, which can co-aggregate into a...
A general characteristic of aggregation is the multiple interaction and cross-feedback among distinc...
The primary nucleation step in amyloid fibril formation can, depending on the nature of peptide sequ...
Protein oligomers have been implicated as toxic agents in a wide range of amyloid-related diseases. ...
The inverse scattering problem is based on the scattering theory in physics, where measured data suc...
One and the same protein can self-assemble into amyloid fibrils with different morphologies. The phe...
AbstractThe formation of protein fibrils, and in particular amyloid fibrils, underlies many human di...
Self-assembly of misfolded proteins into ordered fibrillar aggregates known as amyloid results in nu...
AbstractOne and the same protein can self-assemble into amyloid fibrils with different morphologies....
Peptides and proteins possess an inherent tendency to self-assemble, prompting the formation of amyl...
Intermolecular noncovalent interactions between protein molecules result in the formation of a wide ...
Understanding the earliest molecular events during nucleation of the amyloid aggregation cascade is ...
Assembly and deposition of insoluble amyloid fibrils with a distinctive cross-β-sheet structure is t...
Despite the complexity and the specificity of the amino acid code, a variety of peptides and protein...
The mechanism of amyloid fibril formation by proteins has been classically described by the nucleati...
More than twenty types of proteins can adopt misfolded conforma-tions, which can co-aggregate into a...
A general characteristic of aggregation is the multiple interaction and cross-feedback among distinc...
The primary nucleation step in amyloid fibril formation can, depending on the nature of peptide sequ...
Protein oligomers have been implicated as toxic agents in a wide range of amyloid-related diseases. ...
The inverse scattering problem is based on the scattering theory in physics, where measured data suc...
One and the same protein can self-assemble into amyloid fibrils with different morphologies. The phe...