Interfacial metal atoms of metallic nano-chaperones on modulating amyloid fibrillation
Synthetic metallic nano-chaperones possessing biomolecular chaperone functions hold great promise as candidates for modulating protein conformation. Despite extensive research, the involvement and mechanisms of interfacial metal atoms in metallic nano-chaperones on modulating protein conformation re...
Gespeichert in:
Veröffentlicht in: | Science China materials 2024-07, Vol.67 (7), p.2345-2354 |
---|---|
Hauptverfasser: | , , , , , , , , |
Format: | Artikel |
Sprache: | eng |
Schlagworte: | |
Online-Zugang: | Volltext |
Tags: |
Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
|
Zusammenfassung: | Synthetic metallic nano-chaperones possessing biomolecular chaperone functions hold great promise as candidates for modulating protein conformation. Despite extensive research, the involvement and mechanisms of interfacial metal atoms in metallic nano-chaperones on modulating protein conformation remain elusive, significantly hindering the development of high-performance metallic nano-chaperones. In this study, interfacial atomically precise metal nanoclusters (Au
25
, Au
24
Ag
1
, Au
24
Cd
1
, Au
24
Cu
1
) modified with the same ligand 3-Mercaptopropionic acid (MPA) were prepared as a model to systematically investigate their modulation effects on Aβ
40
fibrillation. All-atom molecular dynamics simulation suggested that the interfacial doped metal atoms (Cu, Cd and Ag) can influence the folding of Aβ
40
in contact with them through weak interactions including vander-Waals forces and electrostatic interactions. Isothermal titration calorimetry results further revealed that the interaction of Au
24
Cu
1
to Aβ
40
was 1.76, 2.09, 16.67 times larger than those of Au
24
Cd
1
, Au
24
Ag
1
and Au
25
, respectively. Consequently, these differential interactions translated into different modulating effects of metallic nano-chaperones on Aβ folding and even subsequent fibrillation, with the order of effectiveness being Au
24
Cu
1
> Au
24
Cd
1
> Au
24
Ag
1
> Au
25
. This work provides microscopic molecular insights into the identity of interfacial metal atoms on metallic nanoclusters and offers guidelines for customizing metallic nano-chaperones by manipulating their interfacial metal atoms. |
---|---|
ISSN: | 2095-8226 2199-4501 |
DOI: | 10.1007/s40843-024-2960-6 |