Amyloidlike proteins form highly organized aggregates, such as fibrils and plaques, preceded by the assembly of a wide range of unstructured oligomers and protofibrils. Despite their importance in a number of human neurodegenerative diseases, a comprehensive understanding of their kinetics and thermodynamics is still missing. We investigate, by computer simulations, a realistic model of amyloid molecules interacting via the experimentally determined Derjaguin-Landau-Verwey-Overbeek potential and derive its phase diagram. We show that fibrils and plaques, along with their precursors, correspond to different equilibrium and metastable thermodynamics phases and discuss the dynamical mechanisms leading to the nucleation and self-assembly of lar...
The pre-fibrillar stages of amyloid formation have been implicated in cellular toxicity, but have pr...
This work describes the development and application of computational models for the investigation of...
By extended atomistic simulations in explicit solvent and bias-exchange metadynamics, we study the a...
Amyloidlike proteins form highly organized aggregates, such as fibrils and plaques, preceded by the ...
ABSTRACT: Self-assembly of proteins into amyloid fibrils plays a key role in a multitude of human di...
The assembly mechanism for aggregation of amyloid fibril is important and fundamental for any quanti...
Amyloid fibril formation is central to the etiology of a wide range of serious human diseases, such ...
Intermolecular noncovalent interactions between protein molecules result in the formation of a wide ...
Starting from a disordered aggregate, we have simulated the formation of ordered amyloid-like beta s...
Amyloid formation is associated with various pathophysiological conditions like Alzheimer's and Park...
A simple lattice-gas model, with two fundamental energy terms —elongation and nucleation effects, is...
Protein misfolding and concomitant aggregation towards amyloid formation is the underlying biochemic...
Proteins play a critical role in living systems by performing most of the functions inside cells. Th...
AbstractWe develop a theory for three states of equilibrium of amyloid peptides: the monomer, oligom...
The spontaneous assembly of proteins into amyloid fibrils is a phenomenon central to many increasing...
The pre-fibrillar stages of amyloid formation have been implicated in cellular toxicity, but have pr...
This work describes the development and application of computational models for the investigation of...
By extended atomistic simulations in explicit solvent and bias-exchange metadynamics, we study the a...
Amyloidlike proteins form highly organized aggregates, such as fibrils and plaques, preceded by the ...
ABSTRACT: Self-assembly of proteins into amyloid fibrils plays a key role in a multitude of human di...
The assembly mechanism for aggregation of amyloid fibril is important and fundamental for any quanti...
Amyloid fibril formation is central to the etiology of a wide range of serious human diseases, such ...
Intermolecular noncovalent interactions between protein molecules result in the formation of a wide ...
Starting from a disordered aggregate, we have simulated the formation of ordered amyloid-like beta s...
Amyloid formation is associated with various pathophysiological conditions like Alzheimer's and Park...
A simple lattice-gas model, with two fundamental energy terms —elongation and nucleation effects, is...
Protein misfolding and concomitant aggregation towards amyloid formation is the underlying biochemic...
Proteins play a critical role in living systems by performing most of the functions inside cells. Th...
AbstractWe develop a theory for three states of equilibrium of amyloid peptides: the monomer, oligom...
The spontaneous assembly of proteins into amyloid fibrils is a phenomenon central to many increasing...
The pre-fibrillar stages of amyloid formation have been implicated in cellular toxicity, but have pr...
This work describes the development and application of computational models for the investigation of...
By extended atomistic simulations in explicit solvent and bias-exchange metadynamics, we study the a...