Fibrillar protein aggregation is a hallmark of a variety of human diseases. Examples include the deposition of amyloid-β and tau in Alzheimer's disease, and that of α-synuclein in Parkinson's disease. The molecular mechanisms by which soluble proteins form amyloid fibrils have been extensively studied in the test tube. These investigations have revealed the microscopic steps underlying amyloid formation, and the role of factors such as chaperones that modulate these processes. This perspective explores the question to what extent the mechanisms of amyloid formation elucidated in vitro apply to human disease. The answer is not yet clear, and may differ depending on the protein and the associated disease. Nevertheless, there are striking qual...
The formation of aggregates from a range of normally soluble peptides and proteins is the hallmark o...
Amyloids are unbranched protein fibrils with a characteristic spatial structure. Although the amyloi...
Protein misfolding and aggregation into insoluble amyloid deposits are often associated with neurode...
Fibrillar protein aggregation is a hallmark of a variety of human diseases. Examples include the dep...
Fibrillar protein aggregation is a hallmark of a variety of human diseases. Examples include the dep...
Fibrillar protein aggregation is a hallmark of a variety of human diseases. Examples include the dep...
As the population is aging, the incidence of age-related neurodegenerative diseases, such as Alzheim...
As the population is aging, the incidence of age-related neurodegenerative diseases, such as Alzheim...
The inability of a protein to adopt its native and soluble conformation (protein misfolding) is the ...
Formation of large fibers and plaques by amyloid proteins is recognized as the molecular hallmark of...
Formation of large fibers and plaques by amyloid proteins is recognized as the molecular hallmark of...
The amyloidoses constitute a large group of diseases caused by an alteration in the conformation and...
This review will focus on the process of amyloid-type protein aggregation. Amyloid fibrils are an im...
Protein aggregation occurs in vivo as a result of improper folding or misfolding. Diverse diseases a...
Protein aggregation occurs in vivo as a result of improper folding or misfolding. Diverse diseases a...
The formation of aggregates from a range of normally soluble peptides and proteins is the hallmark o...
Amyloids are unbranched protein fibrils with a characteristic spatial structure. Although the amyloi...
Protein misfolding and aggregation into insoluble amyloid deposits are often associated with neurode...
Fibrillar protein aggregation is a hallmark of a variety of human diseases. Examples include the dep...
Fibrillar protein aggregation is a hallmark of a variety of human diseases. Examples include the dep...
Fibrillar protein aggregation is a hallmark of a variety of human diseases. Examples include the dep...
As the population is aging, the incidence of age-related neurodegenerative diseases, such as Alzheim...
As the population is aging, the incidence of age-related neurodegenerative diseases, such as Alzheim...
The inability of a protein to adopt its native and soluble conformation (protein misfolding) is the ...
Formation of large fibers and plaques by amyloid proteins is recognized as the molecular hallmark of...
Formation of large fibers and plaques by amyloid proteins is recognized as the molecular hallmark of...
The amyloidoses constitute a large group of diseases caused by an alteration in the conformation and...
This review will focus on the process of amyloid-type protein aggregation. Amyloid fibrils are an im...
Protein aggregation occurs in vivo as a result of improper folding or misfolding. Diverse diseases a...
Protein aggregation occurs in vivo as a result of improper folding or misfolding. Diverse diseases a...
The formation of aggregates from a range of normally soluble peptides and proteins is the hallmark o...
Amyloids are unbranched protein fibrils with a characteristic spatial structure. Although the amyloi...
Protein misfolding and aggregation into insoluble amyloid deposits are often associated with neurode...