AbstractBased on atomic force microscopy analysis of the morphology of fibrillar species formed during fibrillation of α-synuclein, insulin, and the B1 domain of protein G, a previously described model for the assembly of amyloid fibrils of immunoglobulin light-chain variable domains is proposed as a general model for the assembly of protein fibrils. For all of the proteins studied, we observed two or three fibrillar species that vary in diameter. The smallest, protofilaments, have a uniform height, whereas the larger species, protofibrils and fibrils, have morphologies that are indicative of multiple protofilaments intertwining. In all cases, protofilaments intertwine to form protofibrils, and protofibrils intertwine to form fibrils. We pr...
The kinetics of spontaneous assembly of amyloid fibrils of wild-type beta(2)-microglobulin (beta(2)M...
The aggregation of proteins into fibrillar structures called amyloid is a characteristic of many dis...
AbstractThe importance of understanding the mechanism of protein aggregation into insoluble amyloid ...
AbstractBased on atomic force microscopy analysis of the morphology of fibrillar species formed duri...
AbstractHigh resolution atomic force microscopy is a powerful tool to characterize nanoscale morphol...
AbstractAs the application of high-resolution atomic force microscopy (AFM) has led us recently to t...
金沢大学理工研究域数物科学系Formation of fibrillar structures of proteins that deposit into aggregates has been su...
High resolution atomic force microscopy is a powerful tool to characterize nanoscale morphological f...
High resolution atomic force microscopy is a powerful tool to characterize nanoscale morphological f...
AbstractAmyloidosis is a class of diseases caused by protein aggregation and deposition in various t...
Amyloid fibrils spontaneously formed by the aggregation of a diverse class of polypeptides and prote...
One of the hallmarks of Alzheimer's disease is the self-aggregation of the amyloid beta peptide (A b...
The kinetics of spontaneous assembly of amyloid fibrils of wild-type b2-microglobulin (b2M) in vitro...
The aggregation of proteins into fibrillar structures called amyloid is a characteristic of many dis...
AbstractBackground: Amyloid plaques composed of the fibrillar form of the amyloid-β protein (Aβ) are...
The kinetics of spontaneous assembly of amyloid fibrils of wild-type beta(2)-microglobulin (beta(2)M...
The aggregation of proteins into fibrillar structures called amyloid is a characteristic of many dis...
AbstractThe importance of understanding the mechanism of protein aggregation into insoluble amyloid ...
AbstractBased on atomic force microscopy analysis of the morphology of fibrillar species formed duri...
AbstractHigh resolution atomic force microscopy is a powerful tool to characterize nanoscale morphol...
AbstractAs the application of high-resolution atomic force microscopy (AFM) has led us recently to t...
金沢大学理工研究域数物科学系Formation of fibrillar structures of proteins that deposit into aggregates has been su...
High resolution atomic force microscopy is a powerful tool to characterize nanoscale morphological f...
High resolution atomic force microscopy is a powerful tool to characterize nanoscale morphological f...
AbstractAmyloidosis is a class of diseases caused by protein aggregation and deposition in various t...
Amyloid fibrils spontaneously formed by the aggregation of a diverse class of polypeptides and prote...
One of the hallmarks of Alzheimer's disease is the self-aggregation of the amyloid beta peptide (A b...
The kinetics of spontaneous assembly of amyloid fibrils of wild-type b2-microglobulin (b2M) in vitro...
The aggregation of proteins into fibrillar structures called amyloid is a characteristic of many dis...
AbstractBackground: Amyloid plaques composed of the fibrillar form of the amyloid-β protein (Aβ) are...
The kinetics of spontaneous assembly of amyloid fibrils of wild-type beta(2)-microglobulin (beta(2)M...
The aggregation of proteins into fibrillar structures called amyloid is a characteristic of many dis...
AbstractThe importance of understanding the mechanism of protein aggregation into insoluble amyloid ...