Protein and peptide self-assembly is integral to a growing number of misfolding diseases that involve the ordered assembly and deposition of misfolded proteins as amyloid fibrils. However, it is becoming clear that these highly stable assemblies can be exploited as potential bionanomaterials. Recent work reveals that amyloid-like assembly is carefully controlled by a number of organisms to form functional amyloid. It is essential to gain an understanding of how sequence influences the assembly mechanism, as well as the final structure, to enable the control that is required to fully exploit these materials. In this tutorial review, we will discuss the different types of fibrous protein assembly from structural and cytoskeletal proteins thro...
Thesis (Ph. D.)--University of Rochester. Dept. of Chemistry, 2013.Peptide self-assembly into β...
The local or systemic deposition of insoluble amyloid fibrils is characteristic of the pathogenesis ...
Protein and peptide self-assembly is a powerful design principle for engineering of new biomolecules...
Proteins and peptides are able to self-assemble in vivo and in vitro. In vitro, this ability can be ...
Amyloid fibril formation is associated with misfolding diseases, as well as fulfilling a functional ...
Amyloid fibril formation is associated with misfolding diseases, as well as fulfilling a functional ...
Many proteins of diverse sequence, structure and function self-assemble into morphologically similar...
Many proteins of diverse sequence, structure and function self-assemble into morphologically similar...
Many proteins of diverse sequence, structure and function self-assemble into morphologically similar...
Amyloid fibrils are associated with a range of highly debilitating neurological disorders including ...
The recent high-resolution structures of amyloid fibrils show that the organization of peptide segme...
The folding of a protein from a sequence of amino acids to a well-defined tertiary structure is one ...
Amyloidogenic peptides are well known for their involvement in diseases such as type 2 diabetes and ...
Protein and peptide self-assembly is a powerful design principle for engineering of new biomolecules...
The local or systemic deposition of insoluble amyloid fibrils is characteristic of the pathogenesis ...
Thesis (Ph. D.)--University of Rochester. Dept. of Chemistry, 2013.Peptide self-assembly into β...
The local or systemic deposition of insoluble amyloid fibrils is characteristic of the pathogenesis ...
Protein and peptide self-assembly is a powerful design principle for engineering of new biomolecules...
Proteins and peptides are able to self-assemble in vivo and in vitro. In vitro, this ability can be ...
Amyloid fibril formation is associated with misfolding diseases, as well as fulfilling a functional ...
Amyloid fibril formation is associated with misfolding diseases, as well as fulfilling a functional ...
Many proteins of diverse sequence, structure and function self-assemble into morphologically similar...
Many proteins of diverse sequence, structure and function self-assemble into morphologically similar...
Many proteins of diverse sequence, structure and function self-assemble into morphologically similar...
Amyloid fibrils are associated with a range of highly debilitating neurological disorders including ...
The recent high-resolution structures of amyloid fibrils show that the organization of peptide segme...
The folding of a protein from a sequence of amino acids to a well-defined tertiary structure is one ...
Amyloidogenic peptides are well known for their involvement in diseases such as type 2 diabetes and ...
Protein and peptide self-assembly is a powerful design principle for engineering of new biomolecules...
The local or systemic deposition of insoluble amyloid fibrils is characteristic of the pathogenesis ...
Thesis (Ph. D.)--University of Rochester. Dept. of Chemistry, 2013.Peptide self-assembly into β...
The local or systemic deposition of insoluble amyloid fibrils is characteristic of the pathogenesis ...
Protein and peptide self-assembly is a powerful design principle for engineering of new biomolecules...