<div><p>Protein-protein interactions are the quintessence of physiological activities, but also participate in pathological conditions. Amyloid formation, an abnormal protein-protein interaction process, is a widespread phenomenon in divergent proteins and peptides, resulting in a variety of aggregation disorders. The complexity of the mechanisms underlying amyloid formation/amyloidogenicity is a matter of great scientific interest, since their revelation will provide important insight on principles governing protein misfolding, self-assembly and aggregation. The implication of more than one protein in the progression of different aggregation disorders, together with the cited synergistic occurrence between amyloidogenic proteins, highlight...
Fibrillar protein aggregation is a hallmark of a variety of human diseases. Examples include the dep...
One of the grand challenges of biophysical chemistry is to understand the principles that govern pro...
In this work, Louros et al. uncover a rule book for interactions of amyloids with other proteins. Th...
Protein-protein interactions are the quintessence of physiological activities, but also participate ...
Spurred by the appreciation that protein aggregation, leadingto amyloid fibril formation, is linked ...
Protein aggregation underlies a wide range of human disorders. The polypeptides involved in these pa...
Amyloids are unbranched protein fibrils with a characteristic spatial structure. Although the amyloi...
International audienceProtein aggregation into highly ordered, regularly repeated cross-β sheet stru...
Misfolding and aggregation of proteins in tissues is linked to the onset of a diverse set of human n...
The misfolding of proteins to form amyloid is a key pathological feature of several progressive, and...
There are several diseases which are caused by amyloid, a deposit of aggregated protein. Examples of...
Interactome maps are valuable resources to elucidate protein function and disease mechanisms. Here, ...
Biomolecular self-assembly is a fundamental process in all organisms. As primary components of the l...
Protein aggregation is often studied in the context of neurodegenerative diseases. Deposits of supra...
In the cell, protein folding into stable globular conformations is in competition with aggregation i...
Fibrillar protein aggregation is a hallmark of a variety of human diseases. Examples include the dep...
One of the grand challenges of biophysical chemistry is to understand the principles that govern pro...
In this work, Louros et al. uncover a rule book for interactions of amyloids with other proteins. Th...
Protein-protein interactions are the quintessence of physiological activities, but also participate ...
Spurred by the appreciation that protein aggregation, leadingto amyloid fibril formation, is linked ...
Protein aggregation underlies a wide range of human disorders. The polypeptides involved in these pa...
Amyloids are unbranched protein fibrils with a characteristic spatial structure. Although the amyloi...
International audienceProtein aggregation into highly ordered, regularly repeated cross-β sheet stru...
Misfolding and aggregation of proteins in tissues is linked to the onset of a diverse set of human n...
The misfolding of proteins to form amyloid is a key pathological feature of several progressive, and...
There are several diseases which are caused by amyloid, a deposit of aggregated protein. Examples of...
Interactome maps are valuable resources to elucidate protein function and disease mechanisms. Here, ...
Biomolecular self-assembly is a fundamental process in all organisms. As primary components of the l...
Protein aggregation is often studied in the context of neurodegenerative diseases. Deposits of supra...
In the cell, protein folding into stable globular conformations is in competition with aggregation i...
Fibrillar protein aggregation is a hallmark of a variety of human diseases. Examples include the dep...
One of the grand challenges of biophysical chemistry is to understand the principles that govern pro...
In this work, Louros et al. uncover a rule book for interactions of amyloids with other proteins. Th...