Protein oligomerization has two notable aspects: it is crucial for the performing cellular and molecular processes accurately, and it produces amyloid fibril precursors. Although a clear explanation for amyloidosis as a whole is lacking, most studies have emphasized the importance of protein misfolding followed by formation of cytotoxic oligomer structures, which are responsible for disorders as diverse as neurodegenerative diseases, such as Alzheimer's and Parkinson's diseases, and metabolic disorders, such as type 2 diabetes. Constant surveillance by oligomeric protein structures known as molecular chaperones enables cells to overcome the challenge of misfolded proteins and their harmful assemblies. These molecular chaperones encounter pr...
Accumulation of amyloid-like aggregates is a hallmark of numerous neurodegenerative disorders such a...
Alzheimer’s disease remains a formidable challenge for therapeutic management. In a recent report in...
Protein homeostasis or proteostasis involves an intricate balance between the synthesis, folding, lo...
The self-association of misfolded or damaged proteins into ordered amyloid-like aggregates character...
A common pathological hallmark of proteinconformational brain diseases is the formation of diseases...
© 2020 by the authors.Age-dependent alterations in the proteostasis network are crucial in the progr...
AbstractThe most conspicuous feature of many neurodegenerative disorders, including Alzheimer's, Par...
As the population is aging, the incidence of age-related neurodegenerative diseases, such as Alzheim...
Extracellular protein misfolding and aggregation underlie many of the most serious amyloidoses inclu...
The conversion of native peptides and proteins into amyloid aggregates is a hallmark of over 50 huma...
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...
Chaperones are the primary regulators of the proteostasis network and are known to facilitate protei...
Neurodegenerative diseases are characterized by the degeneration of our brain cells. One of the most...
The oligomerization of monomeric proteins into large, elongated, β-sheet-rich fibril structures (amy...
Accumulation of amyloid-like aggregates is a hallmark of numerous neurodegenerative disorders such a...
Alzheimer’s disease remains a formidable challenge for therapeutic management. In a recent report in...
Protein homeostasis or proteostasis involves an intricate balance between the synthesis, folding, lo...
The self-association of misfolded or damaged proteins into ordered amyloid-like aggregates character...
A common pathological hallmark of proteinconformational brain diseases is the formation of diseases...
© 2020 by the authors.Age-dependent alterations in the proteostasis network are crucial in the progr...
AbstractThe most conspicuous feature of many neurodegenerative disorders, including Alzheimer's, Par...
As the population is aging, the incidence of age-related neurodegenerative diseases, such as Alzheim...
Extracellular protein misfolding and aggregation underlie many of the most serious amyloidoses inclu...
The conversion of native peptides and proteins into amyloid aggregates is a hallmark of over 50 huma...
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...
Chaperones are the primary regulators of the proteostasis network and are known to facilitate protei...
Neurodegenerative diseases are characterized by the degeneration of our brain cells. One of the most...
The oligomerization of monomeric proteins into large, elongated, β-sheet-rich fibril structures (amy...
Accumulation of amyloid-like aggregates is a hallmark of numerous neurodegenerative disorders such a...
Alzheimer’s disease remains a formidable challenge for therapeutic management. In a recent report in...
Protein homeostasis or proteostasis involves an intricate balance between the synthesis, folding, lo...