The aggregates of the Aβ peptide associated with Alzheimer's disease are able to both grow in size as well as generate, through secondary nucleation, new small oligomeric species, that are major cytotoxins associated with neuronal death. Despite the importance of these amyloid fibril-dependent processes, their structural and molecular underpinnings have remained challenging to elucidate. Here, we consider two molecular chaperones: the Brichos domain, which suppresses specifically secondary nucleation processes, and clusterin which our results show is capable of inhibiting, specifically, the elongation of Aβ fibrils at remarkably low substoichiometric ratios. Microfluidic diffusional sizing measurements demonstrate that this inhibition origi...
Unlike misfolding in neurodegenerative diseases, aggregation of functional amyloids involved in bact...
We have studied the effects of the extracellular molecular chaperone, clusterin, on the in vitro ag...
Understanding the structural mechanism by which proteins and peptides aggregate is crucial given the...
The aggregates of the Ab peptide associated with Alzheimer's disease are able to both grow in size a...
Amyloid fibril formation by the extracellular protein β2-microglobulin (β2m) and its subsequent accu...
Alzheimer's disease is an increasingly prevalent neurodegenerative disorder whose pathogenesis has b...
The aberrant aggregation of the amyloid-β peptide into β-sheet rich, fibrillar structures proceeds v...
The aberrant aggregation of the amyloid-β peptide into β-sheet rich, fibrillar structures proceeds v...
Inhibition of amyloid β peptide (Aβ) aggregation is an important goal due to the connection of this ...
We have studied the effects of the extracellular molecular chaperone, clusterin, on the in vitro agg...
Fibrillar protein aggregates are the pathological hallmark of a group of age-dependent neurodegenera...
AbstractThe molecular chaperone αB-crystallin is a small heat-shock protein that is upregulated in r...
The molecular chaperone αB-crystallin is a small heat-shock protein that is upregulated in response ...
The human molecular chaperone protein DNAJB6 was recently found to inhibit the formation of amyloid ...
. Protein misfolding and aggregation is increasingly being recognized as a cause of disease. In Alzh...
Unlike misfolding in neurodegenerative diseases, aggregation of functional amyloids involved in bact...
We have studied the effects of the extracellular molecular chaperone, clusterin, on the in vitro ag...
Understanding the structural mechanism by which proteins and peptides aggregate is crucial given the...
The aggregates of the Ab peptide associated with Alzheimer's disease are able to both grow in size a...
Amyloid fibril formation by the extracellular protein β2-microglobulin (β2m) and its subsequent accu...
Alzheimer's disease is an increasingly prevalent neurodegenerative disorder whose pathogenesis has b...
The aberrant aggregation of the amyloid-β peptide into β-sheet rich, fibrillar structures proceeds v...
The aberrant aggregation of the amyloid-β peptide into β-sheet rich, fibrillar structures proceeds v...
Inhibition of amyloid β peptide (Aβ) aggregation is an important goal due to the connection of this ...
We have studied the effects of the extracellular molecular chaperone, clusterin, on the in vitro agg...
Fibrillar protein aggregates are the pathological hallmark of a group of age-dependent neurodegenera...
AbstractThe molecular chaperone αB-crystallin is a small heat-shock protein that is upregulated in r...
The molecular chaperone αB-crystallin is a small heat-shock protein that is upregulated in response ...
The human molecular chaperone protein DNAJB6 was recently found to inhibit the formation of amyloid ...
. Protein misfolding and aggregation is increasingly being recognized as a cause of disease. In Alzh...
Unlike misfolding in neurodegenerative diseases, aggregation of functional amyloids involved in bact...
We have studied the effects of the extracellular molecular chaperone, clusterin, on the in vitro ag...
Understanding the structural mechanism by which proteins and peptides aggregate is crucial given the...