We present a simulation study of the early events of peptide dissociation from a fibril of the Alzheimer’s Aβ42 peptide. The fibril consists of layers of two adjacent Aβ42 peptides each folded in an S-shaped structure which has been determined by solid state NMR spectroscopy of a monomorphic disease-relevant species. Multiple molecular dynamics runs (16 at 310 K and 15 at 370 K) were carried out starting from an 18-peptide protofibril for a cumulative sampling of about 15 μs. The simulations show structural stability of the fibrillar core and an overall increase in the twist to about 3 degrees. The N-terminal segment 1–14 is disordered in all peptides. At both ends of the fibril, the central segment 21–29, which includes part of the β<sub>2...
Amyloid β (Aβ) is the subject of numerous studies due to its link to the devastating Alzheimer’s dis...
An experimentally defined model for the fibril formed from the core residues of the â-amyloid (Aâ) p...
<div><p>Discovering the mechanisms by which proteins aggregate into fibrils is an essential first st...
We present a simulation study of the early events of peptide dissociation from a fibril of the Alzhe...
We present a simulation study of the early events of peptide dissociation from a fibril of the Alzhe...
We present a simulation study of the early events of peptide dissociation from a fibril of the Alzhe...
We present a simulation study of the early events of peptide dissociation from a fibril of the Alzhe...
We present a simulation study of the early events of peptide dissociation from a fibril of the Alzhe...
AbstractWe explore the relative contributions of different structural elements to the stability of A...
A key player in Alzheimer’s disease is the peptide amyloid-beta (Aβ), whose aggregation into small s...
We explore the relative contributions of different structural elements to the stability of Abeta fib...
AbstractAlzheimer's disease is a debilitating neurodegenerative disorder associated with the abnorma...
AbstractWe explore the relative contributions of different structural elements to the stability of A...
Amyloid-β (Aβ) fibrils and plaques are one of the hallmarks of Alzheimer’s disease. While the kineti...
Amyloid-β (Aβ) fibrils and plaques are one of the hallmarks of Alzheimer’s disease. While the kineti...
Amyloid β (Aβ) is the subject of numerous studies due to its link to the devastating Alzheimer’s dis...
An experimentally defined model for the fibril formed from the core residues of the â-amyloid (Aâ) p...
<div><p>Discovering the mechanisms by which proteins aggregate into fibrils is an essential first st...
We present a simulation study of the early events of peptide dissociation from a fibril of the Alzhe...
We present a simulation study of the early events of peptide dissociation from a fibril of the Alzhe...
We present a simulation study of the early events of peptide dissociation from a fibril of the Alzhe...
We present a simulation study of the early events of peptide dissociation from a fibril of the Alzhe...
We present a simulation study of the early events of peptide dissociation from a fibril of the Alzhe...
AbstractWe explore the relative contributions of different structural elements to the stability of A...
A key player in Alzheimer’s disease is the peptide amyloid-beta (Aβ), whose aggregation into small s...
We explore the relative contributions of different structural elements to the stability of Abeta fib...
AbstractAlzheimer's disease is a debilitating neurodegenerative disorder associated with the abnorma...
AbstractWe explore the relative contributions of different structural elements to the stability of A...
Amyloid-β (Aβ) fibrils and plaques are one of the hallmarks of Alzheimer’s disease. While the kineti...
Amyloid-β (Aβ) fibrils and plaques are one of the hallmarks of Alzheimer’s disease. While the kineti...
Amyloid β (Aβ) is the subject of numerous studies due to its link to the devastating Alzheimer’s dis...
An experimentally defined model for the fibril formed from the core residues of the â-amyloid (Aâ) p...
<div><p>Discovering the mechanisms by which proteins aggregate into fibrils is an essential first st...