Amyloid fiber formation is a specific form of protein aggregation, often resulting from the misfolding of native proteins. Aimed at modeling the crowded environment of the cell, recent experiments showed a reduction in fibrillation halftimes for amyloid-forming peptides in the presence of cosolutes that are preferentially excluded from proteins and peptides. The effect of excluded cosolutes has previously been attributed to the large volume excluded by such inert cellular solutes, sometimes termed ‘‘macromolecular crowding’’. Here, we studied a model peptide that can fold to a stable monomeric b-hairpin conformation, but under certain solution conditions aggregates in the form of amyloid fibrils. Using Circular Dichroism spectroscopy (CD), ...
<div><p>The biological cell is known to exhibit a highly crowded milieu, which significantly influen...
ABSTRACT Formation of large protein fibrils with a cross b-sheet architecture is the key indicator...
Understanding the influence of macromolecular crowding and nanoparticles on the formation of in-regi...
Amyloid fiber formation is a specific form of protein aggregation, often resulting from the misfoldi...
Biological protein self-assembly occurs in the cellular milieu, densely occupied by other macromolec...
Amyloid formation and accumulation is a hallmark of protein misfolding diseases and is associated wi...
Biological protein self-assembly occurs in the cellular milieu, densely occupied by other macromolec...
ABSTRACT: To examine the effect of crowding on protein aggregation, discontinuous molecular dynamics...
Although the consequences of the crowded cell environments may affect protein folding, function and ...
Protein folding/misfolding in vivo takes place in a highly crowded and confined environment. Such cr...
Protein folding/misfolding in vivo takes place in a highly crowded and confined environment. Such cr...
<div><h3>Background</h3><p>Amyloid fibrils associated with neurodegenerative diseases can be conside...
Amyloid fibrils associated with neurodegenerative diseases can be considered biologically relevant f...
Molecular level self-assembly/aggregation processes are common in biomolecular systems. Specifically...
AbstractWe develop a theory for three states of equilibrium of amyloid peptides: the monomer, oligom...
<div><p>The biological cell is known to exhibit a highly crowded milieu, which significantly influen...
ABSTRACT Formation of large protein fibrils with a cross b-sheet architecture is the key indicator...
Understanding the influence of macromolecular crowding and nanoparticles on the formation of in-regi...
Amyloid fiber formation is a specific form of protein aggregation, often resulting from the misfoldi...
Biological protein self-assembly occurs in the cellular milieu, densely occupied by other macromolec...
Amyloid formation and accumulation is a hallmark of protein misfolding diseases and is associated wi...
Biological protein self-assembly occurs in the cellular milieu, densely occupied by other macromolec...
ABSTRACT: To examine the effect of crowding on protein aggregation, discontinuous molecular dynamics...
Although the consequences of the crowded cell environments may affect protein folding, function and ...
Protein folding/misfolding in vivo takes place in a highly crowded and confined environment. Such cr...
Protein folding/misfolding in vivo takes place in a highly crowded and confined environment. Such cr...
<div><h3>Background</h3><p>Amyloid fibrils associated with neurodegenerative diseases can be conside...
Amyloid fibrils associated with neurodegenerative diseases can be considered biologically relevant f...
Molecular level self-assembly/aggregation processes are common in biomolecular systems. Specifically...
AbstractWe develop a theory for three states of equilibrium of amyloid peptides: the monomer, oligom...
<div><p>The biological cell is known to exhibit a highly crowded milieu, which significantly influen...
ABSTRACT Formation of large protein fibrils with a cross b-sheet architecture is the key indicator...
Understanding the influence of macromolecular crowding and nanoparticles on the formation of in-regi...