Influence of electric field on the amyloid-ß(29-42) peptides embedded in a membrane bilayer.
J Chem Phys
; 148(4): 045105, 2018 Jan 28.
Article
en En
| MEDLINE
| ID: mdl-29390813
Alzheimer's disease is linked to various types of aggregates of amyloid-ß (Aß) peptide and their interactions with protein receptors and neuronal cell membranes. Little is known on the impact of the electric field on membrane-embedded Aß. Here we use atomistic molecular dynamics simulations to study the effects of a constant electric field on the conformations of Aß29-42 dimer inside a membrane, where the electric field has a strength of 20 mV/nm which exists across the membrane of a human neuron. Starting from α-helix peptides, the transmembrane electric field (TMEF) accelerates the conversion from the Gly-out substate to the Gly-side and Gly-in substates. Starting from ß-sheet peptides, TMEF induces changes of the kink and tilt angles at Gly33 and Gly37. Overall, in the simulations totaling 10 µs, TMEF establishes new ground states for the dimer, similar to induced-fit in ligand binding. Our findings indicate that TMEF can stabilize rare conformations of amyloid peptides, and this could influence the cleavage of the amyloid precursor protein and the formation of ß-sheet oligomers in membrane bilayers.
Texto completo:
1
Colección:
01-internacional
Base de datos:
MEDLINE
Asunto principal:
Fragmentos de Péptidos
/
Péptidos beta-Amiloides
/
Membrana Dobles de Lípidos
Límite:
Humans
Idioma:
En
Revista:
J Chem Phys
Año:
2018
Tipo del documento:
Article
País de afiliación:
China
Pais de publicación:
Estados Unidos