PMID: 27717158Polymorphism is a common property of amyloid fibers that complicates their detailed structural and functional studies. Here we report experiments illustrating the chemical principles that enable the formation of amyloid polymorphs with distinct stoichiometric composition. Using appropriate covalent tethering we programmed self-assembly of a model peptide corresponding to the [20-41] fragment of human β2-microglobulin into fibers with either trimeric or dimeric amyloid cores. Using a set of biophysical and biochemical methods we demonstrated their distinct structural, morphological, and templating properties. Furthermore, we showed that supramolecular approaches in which the peptide is modified with bulky substituents can also ...
Research into amyloids was initially motivated by pathogenic amyloids in-volved in disease states su...
Thesis (Ph. D.)--University of Rochester. Dept. of Chemistry, 2012. Chapter 1 coauthored with Bradl...
Mixtures of “template” and “adder” proteins self-assemble into large amyloid fibers of varying morph...
PMID: 27717158Polymorphism is a common property of amyloid fibers that complicates their detailed st...
PMID: 27717158Polymorphism is a common property of amyloid fibers that complicates their detailed st...
PMID: 27717158Polymorphism is a common property of amyloid fibers that complicates their detailed st...
Discovering molecular probes that specifically recognize distinct amyloid structures is highly impor...
Discovering molecular probes that specifically recognize distinct amyloid structures is highly impor...
Discovering molecular probes that specifically recognize distinct amyloid structures is highly impor...
Peptide and protein self-assembly resulting in the formation of amyloidogenic aggregates is generall...
The self-assembly of abnormally folded proteins into amyloid fibrils is a hallmark of many debilitat...
Many peptides and proteins have now been linked with 'amyloidosis' disorders despite having apparent...
Protein–protein interactions (PPIs) are involved in many of life’s essential biological functions ye...
Conformational transition of proteins and peptides into highly stable, beta-sheet-rich structures is...
We report on the fibril genesis under controlled aggregation conditions of a series of peptide–DNA h...
Research into amyloids was initially motivated by pathogenic amyloids in-volved in disease states su...
Thesis (Ph. D.)--University of Rochester. Dept. of Chemistry, 2012. Chapter 1 coauthored with Bradl...
Mixtures of “template” and “adder” proteins self-assemble into large amyloid fibers of varying morph...
PMID: 27717158Polymorphism is a common property of amyloid fibers that complicates their detailed st...
PMID: 27717158Polymorphism is a common property of amyloid fibers that complicates their detailed st...
PMID: 27717158Polymorphism is a common property of amyloid fibers that complicates their detailed st...
Discovering molecular probes that specifically recognize distinct amyloid structures is highly impor...
Discovering molecular probes that specifically recognize distinct amyloid structures is highly impor...
Discovering molecular probes that specifically recognize distinct amyloid structures is highly impor...
Peptide and protein self-assembly resulting in the formation of amyloidogenic aggregates is generall...
The self-assembly of abnormally folded proteins into amyloid fibrils is a hallmark of many debilitat...
Many peptides and proteins have now been linked with 'amyloidosis' disorders despite having apparent...
Protein–protein interactions (PPIs) are involved in many of life’s essential biological functions ye...
Conformational transition of proteins and peptides into highly stable, beta-sheet-rich structures is...
We report on the fibril genesis under controlled aggregation conditions of a series of peptide–DNA h...
Research into amyloids was initially motivated by pathogenic amyloids in-volved in disease states su...
Thesis (Ph. D.)--University of Rochester. Dept. of Chemistry, 2012. Chapter 1 coauthored with Bradl...
Mixtures of “template” and “adder” proteins self-assemble into large amyloid fibers of varying morph...