AbstractThe mouse and human β2-microglobulin protein orthologs are 70 % identical in sequence and share 88 % sequence similarity. These proteins are predicted by various algorithms to have similar aggregation and amyloid propensities. However, whilst human β2m (hβ2m) forms amyloid-like fibrils in denaturing conditions (e.g. pH2.5) in the absence of NaCl, mouse β2m (mβ2m) requires the addition of 0.3M NaCl to cause fibrillation. Here, the factors which give rise to this difference in amyloid propensity are investigated. We utilise structural and mutational analyses, fibril growth kinetics and solubility measurements under a range of pH and salt conditions, to determine why these two proteins have different amyloid propensities. The results s...
All amyloid fibrils contain a cross-β fold. How this structure differs in fibrils formed from protei...
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...
The mouse and human β2-microglobulin protein orthologs are 70 % identical in sequence and share 88 %...
AbstractThe mouse and human β2-microglobulin protein orthologs are 70 % identical in sequence and sh...
AbstractAmyloid is a highly ordered form of aggregate comprising long, straight and unbranched prote...
AbstractDespite much progress in understanding the folding and the aggregation processes of proteins...
Despite much progress in understanding the folding and the aggregation processes of proteins, the ru...
The molecular bases of amyloid aggregation propensity are still poorly understood, especially for pr...
The molecular bases of amyloid aggregation propensity are still poorly understood, especially for pr...
The molecular bases of amyloid aggregation propensity are still poorly understood, especially for pr...
The balance between protein folding and misfolding is a crucial determinant of amyloid assembly. Tra...
Three variants of human beta(2)-microglobulin (beta(2)-m) were compared with wild-type protein. For ...
Abstractβ2-microglobulin (β2m) is a 99-residue protein that aggregates to form amyloid fibrils in di...
All amyloid fibrils contain a cross-β fold. How this structure differs in fibrils formed from protei...
All amyloid fibrils contain a cross-β fold. How this structure differs in fibrils formed from protei...
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...
The mouse and human β2-microglobulin protein orthologs are 70 % identical in sequence and share 88 %...
AbstractThe mouse and human β2-microglobulin protein orthologs are 70 % identical in sequence and sh...
AbstractAmyloid is a highly ordered form of aggregate comprising long, straight and unbranched prote...
AbstractDespite much progress in understanding the folding and the aggregation processes of proteins...
Despite much progress in understanding the folding and the aggregation processes of proteins, the ru...
The molecular bases of amyloid aggregation propensity are still poorly understood, especially for pr...
The molecular bases of amyloid aggregation propensity are still poorly understood, especially for pr...
The molecular bases of amyloid aggregation propensity are still poorly understood, especially for pr...
The balance between protein folding and misfolding is a crucial determinant of amyloid assembly. Tra...
Three variants of human beta(2)-microglobulin (beta(2)-m) were compared with wild-type protein. For ...
Abstractβ2-microglobulin (β2m) is a 99-residue protein that aggregates to form amyloid fibrils in di...
All amyloid fibrils contain a cross-β fold. How this structure differs in fibrils formed from protei...
All amyloid fibrils contain a cross-β fold. How this structure differs in fibrils formed from protei...
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...