Amyloid fibril aggregation is associated with several horrific diseases such as Alzheimer’s, Creutzfeld-Jacob, diabetes, Parkinson’s and others. The process of amyloid aggregation involves forming myriad different metastable intermediate aggregates. Amyloid fibrils are composed of proteins that originate in an innocuous α-helix or random-coil structure. The α-helices convert their structure to β-strands that aggregate into β-sheets, and then into protofibrils, and ultimately into fully formed amyloid fibrils. On the basis of experimental data, I have developed a mathematical model for the kinetics of the reaction pathways and determined rate parameters for peptide secondary structural conversion and aggregation during the entire fibrillogen...
Growth and deposition of amyloid fibrils, polymers of proteins with a cross beta-sheet structure, ar...
AbstractProtein aggregation is associated with fatal neurodegenerative diseases, including Alzheimer...
Understanding the intrinsic properties of proteins to form structural motives such as α-helices and ...
Amyloid fibril aggregation is associated with several horrific diseases such as Alzheimer’s, Creutzf...
Amyloid fibril aggregation is associated with several horrific diseases such as Alzheimer’s, Creutzf...
Amyloid fibril aggregation is associated with several horrific diseases such as Alzheimer’s, Creutzf...
Amyloid fibril aggregation is associated with several horrific diseases such as Alzheimer’s, Creutzf...
Protein misfolding and concomitant aggregation towards amyloid formation is the underlying biochemic...
Protein misfolding and concomitant aggregation towards amyloid formation is the underlying biochemic...
Protein misfolding and concomitant aggregation towards amyloid formation is the underlying biochemic...
Proteins play a critical role in living systems by performing most of the functions inside cells. Th...
<div><p>Discovering the mechanisms by which proteins aggregate into fibrils is an essential first st...
The assembly of normally soluble proteins into amyloid fibrils is a hallmark of neurodegenerative di...
Growth and deposition of amyloid fibrils, polymers of proteins with a cross beta-sheet structure, ar...
Understanding the structural mechanism by which proteins and peptides aggregate is crucial given the...
Growth and deposition of amyloid fibrils, polymers of proteins with a cross beta-sheet structure, ar...
AbstractProtein aggregation is associated with fatal neurodegenerative diseases, including Alzheimer...
Understanding the intrinsic properties of proteins to form structural motives such as α-helices and ...
Amyloid fibril aggregation is associated with several horrific diseases such as Alzheimer’s, Creutzf...
Amyloid fibril aggregation is associated with several horrific diseases such as Alzheimer’s, Creutzf...
Amyloid fibril aggregation is associated with several horrific diseases such as Alzheimer’s, Creutzf...
Amyloid fibril aggregation is associated with several horrific diseases such as Alzheimer’s, Creutzf...
Protein misfolding and concomitant aggregation towards amyloid formation is the underlying biochemic...
Protein misfolding and concomitant aggregation towards amyloid formation is the underlying biochemic...
Protein misfolding and concomitant aggregation towards amyloid formation is the underlying biochemic...
Proteins play a critical role in living systems by performing most of the functions inside cells. Th...
<div><p>Discovering the mechanisms by which proteins aggregate into fibrils is an essential first st...
The assembly of normally soluble proteins into amyloid fibrils is a hallmark of neurodegenerative di...
Growth and deposition of amyloid fibrils, polymers of proteins with a cross beta-sheet structure, ar...
Understanding the structural mechanism by which proteins and peptides aggregate is crucial given the...
Growth and deposition of amyloid fibrils, polymers of proteins with a cross beta-sheet structure, ar...
AbstractProtein aggregation is associated with fatal neurodegenerative diseases, including Alzheimer...
Understanding the intrinsic properties of proteins to form structural motives such as α-helices and ...