Protein amyloid fibrils are a form of linear protein aggregates that are implicated in many neurodegenerative diseases. Here, we study the dynamics of amyloid fibril elongation by performing Langevin dynamic simulations on a coarse-grained model of peptides. Our simulation results suggest that the elongation process is dominated by a series of local minimum due to frustration in monomer-fibril interactions. This rugged energy landscape picture indicates that the amount of recycling of monomers at the fibrils' ends before being fibrilized is substantially reduced in comparison to the conventional two-step elongation model. This picture, along with other predictions discussed, can be tested with current experimental techniques
In this work, we characterize the nucleation and elongation mechanisms of the “diseased” polymorph o...
Protein aggregation, linked to many of diseases, is initiated when monomers access rogue conformatio...
We present simulations of the amyloidogenic core of α-synuclein, the protein causing Parkinson’s dis...
Amyloid-β (Aβ) fibrils and plaques are one of the hallmarks of Alzheimer’s disease. While the kineti...
Amyloid peptides are known to self-assemble into larger aggregates that are linked to the pathogenes...
Amyloid-β is an intrinsically disordered protein that forms fibrils in the brains of patients with A...
The growth of amyloid fibrils is studied by replica exchange molecular dynamics in an implicit solve...
This work describes the development and application of computational models for the investigation of...
An experimentally defined model for the fibril formed from the core residues of the â-amyloid (Aâ) p...
In this work, we characterize the nucleation and elongation mechanisms of the "diseased" polymorph o...
Filamentous β-amyloid aggregates are crucial for the pathology of Alzheimer's disease. Despite the t...
The formation and growth of amyloid fibrils was investigated using coarse-grained molecular dynamics...
The mechanism of addition of a soluble unstructured monomer to a preformed ordered amyloid fibril is...
Amyloid formation is associated with various pathophysiological conditions like Alzheimer's and Park...
Understanding the intrinsic properties of proteins to form structural motives such as α-helices and ...
In this work, we characterize the nucleation and elongation mechanisms of the “diseased” polymorph o...
Protein aggregation, linked to many of diseases, is initiated when monomers access rogue conformatio...
We present simulations of the amyloidogenic core of α-synuclein, the protein causing Parkinson’s dis...
Amyloid-β (Aβ) fibrils and plaques are one of the hallmarks of Alzheimer’s disease. While the kineti...
Amyloid peptides are known to self-assemble into larger aggregates that are linked to the pathogenes...
Amyloid-β is an intrinsically disordered protein that forms fibrils in the brains of patients with A...
The growth of amyloid fibrils is studied by replica exchange molecular dynamics in an implicit solve...
This work describes the development and application of computational models for the investigation of...
An experimentally defined model for the fibril formed from the core residues of the â-amyloid (Aâ) p...
In this work, we characterize the nucleation and elongation mechanisms of the "diseased" polymorph o...
Filamentous β-amyloid aggregates are crucial for the pathology of Alzheimer's disease. Despite the t...
The formation and growth of amyloid fibrils was investigated using coarse-grained molecular dynamics...
The mechanism of addition of a soluble unstructured monomer to a preformed ordered amyloid fibril is...
Amyloid formation is associated with various pathophysiological conditions like Alzheimer's and Park...
Understanding the intrinsic properties of proteins to form structural motives such as α-helices and ...
In this work, we characterize the nucleation and elongation mechanisms of the “diseased” polymorph o...
Protein aggregation, linked to many of diseases, is initiated when monomers access rogue conformatio...
We present simulations of the amyloidogenic core of α-synuclein, the protein causing Parkinson’s dis...