We describe the 3D supramolecular structure of Fmoc-RGDS fibrils, where Fmoc and RGDS refer to the hydrophobic N-(fluorenyl-9-methoxycarbonyl) group and the hydrophilic Arg-Gly-Asp-Ser peptide sequence, respectively. For this purpose, we performed atomistic all-atom molecular dynamics simulations of a wide variety of packing modes derived from both parallel and antiparallel β-sheet configurations. The proposed model, which closely resembles the cross-β core structure of amyloids, is stabilized by π-π stacking interactions between hydrophobic Fmoc groups. More specifically, in this organization, the Fmoc-groups of β-strands belonging to the same β-sheet form columns of π-stacked aromatic rings arranged in a parallel fashion. Eight of such co...
The growth mechanism of β-amyloid (Aβ) peptide fibrils was studied by a physics-based coarse-grained...
The cross-β amyloid form of peptides and proteins represents an archetypal and widely accessible str...
The pathway to amyloid fibril formation in proteins involves specific structural changes leading to ...
We describe the 3D supramolecular structure of Fmoc-RGDS fibrils, where Fmoc and RGDS refer to the h...
We describe the 3D supramolecular structure of Fmoc–RGDS fibrils, where Fmoc and RGDS refer to the h...
Self-assembly in aqueous solution has been investigated for two Fmoc [Fmoc = N-(fluorenyl)-9-methoxy...
We have investigated the self-assembly of fluorenylmethoxycarbonyl-conjugated dialanine (Fmoc-AA) mo...
We investigate Aβ17-42 protofibril structures in solution using molecular dynamics simulations. Rece...
Pre-assembled aggregates made of Fmoc-conjugated RGDS and GRDS peptides, where Fmoc refers to fluore...
The characterization at atomic resolution of amyloid-like protein aggregates is one of the fundament...
The common characteristics of amyloid and amyloid-like fibrils from disease- and non-disease-associa...
AbstractWe explore the relative contributions of different structural elements to the stability of A...
We report all-atom molecular dynamics simulations of annular β-amyloid (17–42) structures, single- a...
Secondary nucleation pathways in which existing amyloid fibrils catalyze the formation of new aggreg...
textWhat materials designers most envy is nature’s building design. It has long been a dream for sci...
The growth mechanism of β-amyloid (Aβ) peptide fibrils was studied by a physics-based coarse-grained...
The cross-β amyloid form of peptides and proteins represents an archetypal and widely accessible str...
The pathway to amyloid fibril formation in proteins involves specific structural changes leading to ...
We describe the 3D supramolecular structure of Fmoc-RGDS fibrils, where Fmoc and RGDS refer to the h...
We describe the 3D supramolecular structure of Fmoc–RGDS fibrils, where Fmoc and RGDS refer to the h...
Self-assembly in aqueous solution has been investigated for two Fmoc [Fmoc = N-(fluorenyl)-9-methoxy...
We have investigated the self-assembly of fluorenylmethoxycarbonyl-conjugated dialanine (Fmoc-AA) mo...
We investigate Aβ17-42 protofibril structures in solution using molecular dynamics simulations. Rece...
Pre-assembled aggregates made of Fmoc-conjugated RGDS and GRDS peptides, where Fmoc refers to fluore...
The characterization at atomic resolution of amyloid-like protein aggregates is one of the fundament...
The common characteristics of amyloid and amyloid-like fibrils from disease- and non-disease-associa...
AbstractWe explore the relative contributions of different structural elements to the stability of A...
We report all-atom molecular dynamics simulations of annular β-amyloid (17–42) structures, single- a...
Secondary nucleation pathways in which existing amyloid fibrils catalyze the formation of new aggreg...
textWhat materials designers most envy is nature’s building design. It has long been a dream for sci...
The growth mechanism of β-amyloid (Aβ) peptide fibrils was studied by a physics-based coarse-grained...
The cross-β amyloid form of peptides and proteins represents an archetypal and widely accessible str...
The pathway to amyloid fibril formation in proteins involves specific structural changes leading to ...