Inhibiting amyloid aggregation through high-turnover dynamic interactions could be an efficient strategy that is already used by small heat-shock proteins in different biological contexts. We report the interactions of three topologically non-trivial, zinc-templated metal-organic assemblies, a [2]catenane, a trefoil knot (TK), and Borromean rings, with two β2-microglobulin (β2m) variants responsible for amyloidotic pathologies. Fast exchange and similar patterns of preferred contact surface are observed by NMR, consistent with molecular dynamics simulations. In vitro fibrillation is inhibited by each complex, whereas the zinc-free TK induces protein aggregation and does not inhibit fibrillogenesis. The metal coordination imposes structural ...
Proteins play a critical role in living systems by performing most of the functions inside cells. Th...
We report the effects of the interaction of two camelid antibody fragments, generally called nanobod...
Alzheimer’s disease remains a formidable challenge for therapeutic management. In a recent report in...
In the early stages of amyloid formation, heterogeneous populations of oligomeric species are genera...
Protein–protein interactions (PPIs) are involved in many of life’s essential biological functions ye...
Many diseases are characterized by the pathologic accumulation of aggregated proteins. Known as amyl...
Systemic amyloidosis is caused by misfolding and aggregation of globular proteins in vivo for which ...
Six variants of human lysozyme (single-point mutatants I56T, F57I, W64R, D67H and double mutants F57...
Protein misfolding and aggregation can be induced by a wide variety of factors, such as dominant dis...
Molecular self-assembly is a ubiquitous phenomenon found in living systems that can either be functi...
Abstractβ2-microglobulin (β2m) is a 99-residue protein that aggregates to form amyloid fibrils in di...
Workalemahu M. Berhanu graduated in 2011 from the University of Central Florida with a PhD in Chemis...
The abnormal deposition of Aβ amyloid deposits in the brain is a hallmark of Alzheimer's disease (AD...
Amyloids result from the aggregation of a set of diverse proteins, due to either specific mutations ...
Protein aggregation including the formation of dimers and multimers in solution, underlies an array ...
Proteins play a critical role in living systems by performing most of the functions inside cells. Th...
We report the effects of the interaction of two camelid antibody fragments, generally called nanobod...
Alzheimer’s disease remains a formidable challenge for therapeutic management. In a recent report in...
In the early stages of amyloid formation, heterogeneous populations of oligomeric species are genera...
Protein–protein interactions (PPIs) are involved in many of life’s essential biological functions ye...
Many diseases are characterized by the pathologic accumulation of aggregated proteins. Known as amyl...
Systemic amyloidosis is caused by misfolding and aggregation of globular proteins in vivo for which ...
Six variants of human lysozyme (single-point mutatants I56T, F57I, W64R, D67H and double mutants F57...
Protein misfolding and aggregation can be induced by a wide variety of factors, such as dominant dis...
Molecular self-assembly is a ubiquitous phenomenon found in living systems that can either be functi...
Abstractβ2-microglobulin (β2m) is a 99-residue protein that aggregates to form amyloid fibrils in di...
Workalemahu M. Berhanu graduated in 2011 from the University of Central Florida with a PhD in Chemis...
The abnormal deposition of Aβ amyloid deposits in the brain is a hallmark of Alzheimer's disease (AD...
Amyloids result from the aggregation of a set of diverse proteins, due to either specific mutations ...
Protein aggregation including the formation of dimers and multimers in solution, underlies an array ...
Proteins play a critical role in living systems by performing most of the functions inside cells. Th...
We report the effects of the interaction of two camelid antibody fragments, generally called nanobod...
Alzheimer’s disease remains a formidable challenge for therapeutic management. In a recent report in...