The self-association of misfolded or damaged proteins into ordered amyloid-like aggregates characterizes numerous neurodegenerative disorders. Insoluble amyloid plaques are diagnostic of many disease states. Yet soluble, oligomeric intermediates in the aggregation pathway appear to represent the toxic culprit. Molecular chaperones regulate the fate of misfolded proteins and thereby influence their aggregation state. Chaperones conventionally antagonize aggregation of misfolded, disease proteins and assist in refolding or degradation pathways. Recent work suggests that chaperones may also suppress neurotoxicity by converting toxic, soluble oligomers into benign aggregates. Chaperones can therefore suppress or promote aggregation of disease p...
Human neurodegenerative diseases arise from a wide array of genetic and environmental factors. Despi...
Abstract: Protein misfolding and aggregation cause a large number of neurodegenerative diseases in h...
A common pathological hallmark of proteinconformational brain diseases is the formation of diseases...
The self-association of misfolded or damaged proteins into ordered amyloid-like aggregates character...
© 2020 by the authors.Age-dependent alterations in the proteostasis network are crucial in the progr...
The formation of toxic protein aggregates is a common denominator to many neurodegenerative diseases...
The formation of toxic protein aggregates is a common denominator to many neurode generative disease...
Accumulation of amyloid-like aggregates is a hallmark of numerous neurodegenerative disorders such a...
AbstractThe most conspicuous feature of many neurodegenerative disorders, including Alzheimer's, Par...
The misfolding and aggregation of disease proteins is characteristic of numerous neurodegenerative d...
Protein oligomerization has two notable aspects: it is crucial for the performing cellular and molec...
Proteins have the intrinsic ability to convert from their native functional state into insoluble fib...
Protein homeostasis or proteostasis involves an intricate balance between the synthesis, folding, lo...
Protein aggregation occurs when proteins adopt non-native conformations, exposing hydrophobic surfac...
As the population is aging, the incidence of age-related neurodegenerative diseases, such as Alzheim...
Human neurodegenerative diseases arise from a wide array of genetic and environmental factors. Despi...
Abstract: Protein misfolding and aggregation cause a large number of neurodegenerative diseases in h...
A common pathological hallmark of proteinconformational brain diseases is the formation of diseases...
The self-association of misfolded or damaged proteins into ordered amyloid-like aggregates character...
© 2020 by the authors.Age-dependent alterations in the proteostasis network are crucial in the progr...
The formation of toxic protein aggregates is a common denominator to many neurodegenerative diseases...
The formation of toxic protein aggregates is a common denominator to many neurode generative disease...
Accumulation of amyloid-like aggregates is a hallmark of numerous neurodegenerative disorders such a...
AbstractThe most conspicuous feature of many neurodegenerative disorders, including Alzheimer's, Par...
The misfolding and aggregation of disease proteins is characteristic of numerous neurodegenerative d...
Protein oligomerization has two notable aspects: it is crucial for the performing cellular and molec...
Proteins have the intrinsic ability to convert from their native functional state into insoluble fib...
Protein homeostasis or proteostasis involves an intricate balance between the synthesis, folding, lo...
Protein aggregation occurs when proteins adopt non-native conformations, exposing hydrophobic surfac...
As the population is aging, the incidence of age-related neurodegenerative diseases, such as Alzheim...
Human neurodegenerative diseases arise from a wide array of genetic and environmental factors. Despi...
Abstract: Protein misfolding and aggregation cause a large number of neurodegenerative diseases in h...
A common pathological hallmark of proteinconformational brain diseases is the formation of diseases...