4.4 Article

Exploration of the mechanism for LPFFD inhibiting the formation of beta-sheet conformation of A beta(1-42) in water

Journal

JOURNAL OF MOLECULAR MODELING
Volume 16, Issue 4, Pages 813-821

Publisher

SPRINGER
DOI: 10.1007/s00894-009-0594-y

Keywords

A beta(1-42); Conformational transition; LPFFD; Molecular docking; Molecular dynamics simulation

Funding

  1. National Science Foundation of China [20706029, 20876073]
  2. Jiangsu Science and Technology Department of China [BK2008372]
  3. Nanjing University of Technology of China [ZK200803]

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The main component of senile plaques found in AD brain is amyloid beta-peptide (A beta), and the neurotoxicity and aggregation of A beta are associated with the formation of beta-sheet structure. Experimentally, beta sheet breaker (BSB) peptide fragment Leu-Pro-Phe-Phe-Asp (LPFFD) can combine with A beta, which can inhibit the aggregation of A beta. In order to explore why LPFFD can inhibit the formation of beta-sheet conformation of A beta at atomic level, first, molecular docking is performed to obtain the binding sites of LPFFD on the A beta(1-42) (LPFFD/A beta(1-42)), which is taken as the initial conformation for MD simulations. Then, MD simulations on LPFFD/A beta(1-42) in water are carried out. The results demonstrate that LPFFD can inhibit the conformational transition from alpha-helix to beta-sheet structure for the C-terminus of A beta(1-42), which may be attributed to the hydrophobicity decreasing of C-terminus residues of A beta(1-42) and formation probability decreasing of the salt bridge Asp23-Lys28 in the presence of LPFFD.

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