Proteins and peptides are able to self-assemble in vivo and in vitro. In vitro, this ability can be exploited to make bionanomaterials with many potential uses. Peptides are capable of forming a wide range of structures including fibres, tubules and scaffolds. In vivo, proteins assemble to form cellular fibrous proteins, as well as being involved in protein misfolding in disease. Recent advances using X-ray diffraction have highlighted the internal structure of self-assembled proteins and peptides, showing packing of side chain residues and have enabled a deeper understanding of mechanisms of assembly
A10K (A=alanine, K=lysine) model peptides self-assemble into ribbon-like β-sheet aggregates. Here, w...
Pignataro MF, Herrera MG, Dodero VI. Evaluation of Peptide/Protein Self-Assembly and Aggregation by ...
Self-assembled structures obtained from organic molecules have shown great potential for application...
Protein and peptide self-assembly is integral to a growing number of misfolding diseases that involv...
Protein and peptide self-assembly is a powerful design principle for engineering of new biomolecules...
Methods to characterize the conformation and self-assembly or aggregation of peptides and peptide co...
Methods to characterize the conformation and self-assembly or aggregation of peptides and peptide co...
Molecular self-assembly is a key function in biology and has been developed as an elegant technique ...
Molecular self-assembly is a key function in biology and has been developed as an elegant technique ...
Protein and peptide self-assembly is a powerful design principle for engineering of new biomolecules...
We report the first successful in situ x-ray diffraction experiment with a 2D protein array at the l...
This chapter discusses applications of self-assembly of proteins and peptides in bionanotechnology a...
Self-assembly is a ubiquitous phenomenon in nature. Proteins, polynucleotides, polysaccharides, and ...
A10K (A=alanine, K=lysine) model peptides self-assemble into ribbon-like β-sheet aggregates. Here, w...
Our research aims are to elucidate structure-function relationships of biological macromolecules, ma...
A10K (A=alanine, K=lysine) model peptides self-assemble into ribbon-like β-sheet aggregates. Here, w...
Pignataro MF, Herrera MG, Dodero VI. Evaluation of Peptide/Protein Self-Assembly and Aggregation by ...
Self-assembled structures obtained from organic molecules have shown great potential for application...
Protein and peptide self-assembly is integral to a growing number of misfolding diseases that involv...
Protein and peptide self-assembly is a powerful design principle for engineering of new biomolecules...
Methods to characterize the conformation and self-assembly or aggregation of peptides and peptide co...
Methods to characterize the conformation and self-assembly or aggregation of peptides and peptide co...
Molecular self-assembly is a key function in biology and has been developed as an elegant technique ...
Molecular self-assembly is a key function in biology and has been developed as an elegant technique ...
Protein and peptide self-assembly is a powerful design principle for engineering of new biomolecules...
We report the first successful in situ x-ray diffraction experiment with a 2D protein array at the l...
This chapter discusses applications of self-assembly of proteins and peptides in bionanotechnology a...
Self-assembly is a ubiquitous phenomenon in nature. Proteins, polynucleotides, polysaccharides, and ...
A10K (A=alanine, K=lysine) model peptides self-assemble into ribbon-like β-sheet aggregates. Here, w...
Our research aims are to elucidate structure-function relationships of biological macromolecules, ma...
A10K (A=alanine, K=lysine) model peptides self-assemble into ribbon-like β-sheet aggregates. Here, w...
Pignataro MF, Herrera MG, Dodero VI. Evaluation of Peptide/Protein Self-Assembly and Aggregation by ...
Self-assembled structures obtained from organic molecules have shown great potential for application...