AbstractA novel bead modeling technique has been developed for the analysis of the sedimentation velocity behavior of flexible fibrils. The method involves the generation of a family of bead models representing a sample of the conformations available to the molecule and the calculation of the sedimentation coefficients of these models by established techniques. This approach has been used to investigate the size distribution of amyloid fibrils formed by human apolipoprotein C-II (apoC-II). ApoC-II fibrils have a simple and homogeneous ribbon morphology with no evidence of amorphous aggregation. Freshly prepared apoC-II forms fibrils with systematically larger sedimentation coefficients upon increasing protein concentration (modes of 100, 30...
The aim of this thesis is to investigate and better understand the mechanisms of protein self-assemb...
Delineating the nanoscale properties and the dynamic assembly and disassembly behaviors of amyloid f...
AbstractAmyloid proteins aggregate into polymorphic fibrils that damage tissues of the brain, nerves...
AbstractA novel bead modeling technique has been developed for the analysis of the sedimentation vel...
AbstractAmyloid fibrils have historically been characterized by diagnostic dye-binding assays, their...
Amyloid fibrils spontaneously formed by the aggregation of a diverse class of polypeptides and prote...
Misfolding and accumulation of insoluble protein aggregates in the form of amyloid fibrils is assoc...
Accumulation and aggregation of amyloid are associated with the pathogenesis of many human diseases,...
Self-assembly of misfolded proteins into ordered fibrillar aggregates known as amyloid results in nu...
The self-assembly of proteins into filamentous structures underpins many aspects of biology, from d...
The analysis of amyloidogenic systems reveals the appearance of distinct states of aggregation for a...
The aggregation of normally soluble peptides and proteins into amyloid fibrils is a process associat...
Amyloid fibril aggregation is associated with several horrific diseases such as Alzheimer’s, Creutzf...
AbstractTo understand and tackle amyloid-related diseases, it is crucial to investigate the factors ...
AbstractAmyloid fibrillation has been intensively studied because of its association with various ne...
The aim of this thesis is to investigate and better understand the mechanisms of protein self-assemb...
Delineating the nanoscale properties and the dynamic assembly and disassembly behaviors of amyloid f...
AbstractAmyloid proteins aggregate into polymorphic fibrils that damage tissues of the brain, nerves...
AbstractA novel bead modeling technique has been developed for the analysis of the sedimentation vel...
AbstractAmyloid fibrils have historically been characterized by diagnostic dye-binding assays, their...
Amyloid fibrils spontaneously formed by the aggregation of a diverse class of polypeptides and prote...
Misfolding and accumulation of insoluble protein aggregates in the form of amyloid fibrils is assoc...
Accumulation and aggregation of amyloid are associated with the pathogenesis of many human diseases,...
Self-assembly of misfolded proteins into ordered fibrillar aggregates known as amyloid results in nu...
The self-assembly of proteins into filamentous structures underpins many aspects of biology, from d...
The analysis of amyloidogenic systems reveals the appearance of distinct states of aggregation for a...
The aggregation of normally soluble peptides and proteins into amyloid fibrils is a process associat...
Amyloid fibril aggregation is associated with several horrific diseases such as Alzheimer’s, Creutzf...
AbstractTo understand and tackle amyloid-related diseases, it is crucial to investigate the factors ...
AbstractAmyloid fibrillation has been intensively studied because of its association with various ne...
The aim of this thesis is to investigate and better understand the mechanisms of protein self-assemb...
Delineating the nanoscale properties and the dynamic assembly and disassembly behaviors of amyloid f...
AbstractAmyloid proteins aggregate into polymorphic fibrils that damage tissues of the brain, nerves...