Despite much progress in understanding the folding and the aggregation processes of proteins, the rules defining their interplay have yet to be fully defined. This problem is of particular importance since many diseases are initiated by protein unfolding and hence the propensity to aggregate competes with intramolecular collapse and other folding events. Here, we describe the roles of intramolecular and intermolecular interactions in defining the length of the lag time and the apparent rate of elongation of the 100-residue protein human β2-microglobulin at pH 2.5, commencing from an acid-denatured state that lacks persistent structure but contains significant non-random hydrophobic interactions. Using a combination of site-directed mut...
Understanding the structural mechanism by which proteins and peptides aggregate is crucial given the...
This work describes the development and application of computational models for the investigation of...
In the early stages of amyloid formation, heterogeneous populations of oligomeric species are genera...
AbstractDespite much progress in understanding the folding and the aggregation processes of proteins...
AbstractDespite much progress in understanding the folding and the aggregation processes of proteins...
The balance between protein folding and misfolding is a crucial determinant of amyloid assembly. Tra...
The balance between protein folding and misfolding is a crucial determinant of amyloid assembly. Tra...
AbstractAmyloid is a highly ordered form of aggregate comprising long, straight and unbranched prote...
AbstractAmyloid is a highly ordered form of aggregate comprising long, straight and unbranched prote...
Abstractβ2-microglobulin (β2m) is a 99-residue protein that aggregates to form amyloid fibrils in di...
Self-assembly of misfolded proteins into ordered fibrillar aggregates known as amyloid results in nu...
A wide range of human diseases is associated with mutations that, destabilizing proteins native stat...
AbstractThe mouse and human β2-microglobulin protein orthologs are 70 % identical in sequence and sh...
The mouse and human β2-microglobulin protein orthologs are 70 % identical in sequence and share 88 %...
AbstractIt has been shown that the propensity of a protein to form amyloid-like fibrils can be predi...
Understanding the structural mechanism by which proteins and peptides aggregate is crucial given the...
This work describes the development and application of computational models for the investigation of...
In the early stages of amyloid formation, heterogeneous populations of oligomeric species are genera...
AbstractDespite much progress in understanding the folding and the aggregation processes of proteins...
AbstractDespite much progress in understanding the folding and the aggregation processes of proteins...
The balance between protein folding and misfolding is a crucial determinant of amyloid assembly. Tra...
The balance between protein folding and misfolding is a crucial determinant of amyloid assembly. Tra...
AbstractAmyloid is a highly ordered form of aggregate comprising long, straight and unbranched prote...
AbstractAmyloid is a highly ordered form of aggregate comprising long, straight and unbranched prote...
Abstractβ2-microglobulin (β2m) is a 99-residue protein that aggregates to form amyloid fibrils in di...
Self-assembly of misfolded proteins into ordered fibrillar aggregates known as amyloid results in nu...
A wide range of human diseases is associated with mutations that, destabilizing proteins native stat...
AbstractThe mouse and human β2-microglobulin protein orthologs are 70 % identical in sequence and sh...
The mouse and human β2-microglobulin protein orthologs are 70 % identical in sequence and share 88 %...
AbstractIt has been shown that the propensity of a protein to form amyloid-like fibrils can be predi...
Understanding the structural mechanism by which proteins and peptides aggregate is crucial given the...
This work describes the development and application of computational models for the investigation of...
In the early stages of amyloid formation, heterogeneous populations of oligomeric species are genera...