AbstractWe used tapping mode atomic force microscopy to study the morphology of the amyloid protofibrils formed at fixed conditions (low pH with high ionic strength) by self-assembly of the N-terminal domain of the hydrogenase maturation factor HypF. Although all protofibrils in the sample share a beaded structure and similar values of height and width, an accurate analysis of contour length and end-to-end distance and the comparison of experimental data with theoretical predictions based on the worm-like chain model show that two different populations of protofibrils are present. These populations are characterized by different physical properties, such as persistence length, bending rigidity and Young's modulus. Fluorescence quenching mea...
Protofibrils are transient structures observed during in vitro formation of mature amyloid fibrils a...
Synchrotron x-ray studies on amyloid fibrils have suggested that the stacked pleated beta-sheets are...
AbstractAs the application of high-resolution atomic force microscopy (AFM) has led us recently to t...
We used tapping mode atomic force microscopy to study the morphology of the amyloid protofibrils for...
AbstractBackground: Amyloid plaques composed of the fibrillar form of the amyloid-β protein (Aβ) are...
AbstractHigh resolution atomic force microscopy is a powerful tool to characterize nanoscale morphol...
AbstractBackground: Brain amyloid plaque, a diagnostic feature of Alzheimer's disease (AD), contains...
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...
AbstractBased on atomic force microscopy analysis of the morphology of fibrillar species formed duri...
One of the hallmarks of Alzheimer's disease is the self-aggregation of the amyloid beta peptide (A b...
High resolution atomic force microscopy is a powerful tool to characterize nanoscale morphological f...
The aggregation of proteins often results in highly ordered fibrillar structures. While significant ...
Deposition of the amyloid beta-protein (Abeta) in senile or diffuse plaques is a distinctive feature...
High resolution atomic force microscopy is a powerful tool to characterize nanoscale morphological f...
金沢大学フロンティアサイエンス機構We have investigated the surface structure of islet amyloid polypeptide (IAPP) fibr...
Protofibrils are transient structures observed during in vitro formation of mature amyloid fibrils a...
Synchrotron x-ray studies on amyloid fibrils have suggested that the stacked pleated beta-sheets are...
AbstractAs the application of high-resolution atomic force microscopy (AFM) has led us recently to t...
We used tapping mode atomic force microscopy to study the morphology of the amyloid protofibrils for...
AbstractBackground: Amyloid plaques composed of the fibrillar form of the amyloid-β protein (Aβ) are...
AbstractHigh resolution atomic force microscopy is a powerful tool to characterize nanoscale morphol...
AbstractBackground: Brain amyloid plaque, a diagnostic feature of Alzheimer's disease (AD), contains...
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...
AbstractBased on atomic force microscopy analysis of the morphology of fibrillar species formed duri...
One of the hallmarks of Alzheimer's disease is the self-aggregation of the amyloid beta peptide (A b...
High resolution atomic force microscopy is a powerful tool to characterize nanoscale morphological f...
The aggregation of proteins often results in highly ordered fibrillar structures. While significant ...
Deposition of the amyloid beta-protein (Abeta) in senile or diffuse plaques is a distinctive feature...
High resolution atomic force microscopy is a powerful tool to characterize nanoscale morphological f...
金沢大学フロンティアサイエンス機構We have investigated the surface structure of islet amyloid polypeptide (IAPP) fibr...
Protofibrils are transient structures observed during in vitro formation of mature amyloid fibrils a...
Synchrotron x-ray studies on amyloid fibrils have suggested that the stacked pleated beta-sheets are...
AbstractAs the application of high-resolution atomic force microscopy (AFM) has led us recently to t...