We present simulations of the amyloidogenic core of α-synuclein, the protein causing Parkinson’s disease, as a short chain of coarse-grain patchy particles. Each particle represents a sequence of about a dozen amino acids. The fluctuating secondary structure of this intrinsically disordered protein is modelled by dynamic variations of the shape and interaction characteristics of the patchy particles, ranging from spherical with weak isotropic attractions for the disordered state to spherocylindrical with strong directional interactions for a β-sheet. Flexible linkers between the particles enable sampling of the tertiary structure. This novel model is applied here to study the growth of an amyloid fibril, by calculating the free energy profi...
Intrinsically disordered proteins (IDPs) do not possess well-defined three-dimensional structures in...
Accumulation and aggregation of amyloid are associated with the pathogenesis of many human diseases,...
Despite enormous efforts, our understanding the structure and dynamics of α-synuclein (ASN), a disor...
Amyloid formation by the intrinsically disordered α-synuclein protein is the hallmark of Parkinson's...
Particles in simulations are traditionally endowed with fixed interactions. While this is appropriat...
Amyloid formation by the intrinsically disordered α-synuclein protein is the hallmark of Parkinson’s...
Parkinson's disease, originating from the intrinsically disordered peptide α-synuclein, is a co...
Although organisms have evolved sophisticated cellular mechanisms for regulating their various prote...
Proteins are composed of amino acids, and usually have one native structure. Intrinsically disorder...
Intrinsically disordered proteins (IDPs) are not well described by a single 3D conformation but by a...
For the discovery of treatments against synucleinopathies, it is necessary to unravel and fully unde...
Protein amyloid fibrils are a form of linear protein aggregates that are implicated in many neurodeg...
Aggregation of the protein Alpha-synuclein into amyloid fibrils is linked to the neurodegenerative c...
<div><p>The detailed mechanism of the pathology of α-synuclein in the Parkinson’s disease has not be...
Over the past two decades disordered proteins have become more widely recognized, challenging the ca...
Intrinsically disordered proteins (IDPs) do not possess well-defined three-dimensional structures in...
Accumulation and aggregation of amyloid are associated with the pathogenesis of many human diseases,...
Despite enormous efforts, our understanding the structure and dynamics of α-synuclein (ASN), a disor...
Amyloid formation by the intrinsically disordered α-synuclein protein is the hallmark of Parkinson's...
Particles in simulations are traditionally endowed with fixed interactions. While this is appropriat...
Amyloid formation by the intrinsically disordered α-synuclein protein is the hallmark of Parkinson’s...
Parkinson's disease, originating from the intrinsically disordered peptide α-synuclein, is a co...
Although organisms have evolved sophisticated cellular mechanisms for regulating their various prote...
Proteins are composed of amino acids, and usually have one native structure. Intrinsically disorder...
Intrinsically disordered proteins (IDPs) are not well described by a single 3D conformation but by a...
For the discovery of treatments against synucleinopathies, it is necessary to unravel and fully unde...
Protein amyloid fibrils are a form of linear protein aggregates that are implicated in many neurodeg...
Aggregation of the protein Alpha-synuclein into amyloid fibrils is linked to the neurodegenerative c...
<div><p>The detailed mechanism of the pathology of α-synuclein in the Parkinson’s disease has not be...
Over the past two decades disordered proteins have become more widely recognized, challenging the ca...
Intrinsically disordered proteins (IDPs) do not possess well-defined three-dimensional structures in...
Accumulation and aggregation of amyloid are associated with the pathogenesis of many human diseases,...
Despite enormous efforts, our understanding the structure and dynamics of α-synuclein (ASN), a disor...