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De novo design of self-assembled hexapeptides as β-amyloid (Aβ) peptide inhibitors

ACS Chem Neurosci. 2014 Oct 15;5(10):972-81. doi: 10.1021/cn500165s. Epub 2014 Aug 22.

Abstract

The ability of peptides to construct specific secondary structures provides a useful function for biomaterial design that cannot be achieved with traditional organic molecules and polymers. Inhibition of amyloid formation is a promising therapeutic approach for the treatment of neurodegenerative diseases. Existing peptide-based inhibitors are mainly derived from original amyloid sequences, which have very limited sequence diversity and activity. It is highly desirable to explore other peptide-based inhibitors that are not directly derived from amyloid sequences. Here, we develop a hybrid high-throughput computational method to efficiently screen and design hexapeptide inhibitors against amyloid-β (Aβ) aggregation and toxicity from the first principle. Computationally screened/designed inhibitors are then validated for their inhibition activity using biophysical experiments. We propose and demonstrate a proof-of-concept of the "like-interacts-like" design principle that the self-assembling peptides are able to interact strongly with conformationally similar motifs of Aβ peptides and to competitively reduce Aβ-Aβ interactions, thus preventing Aβ aggregation and Aβ-induced toxicity. Such a de novo design can also be generally applicable to design new peptide inhibitors against other amyloid diseases, beyond traditional peptide inhibitors with homologous sequences to parent amyloid peptides.

Keywords: Alzheimer’s disease; Amyloid inhibitor; amyloid cytotoxicity; protein misfolding; self-assembled peptide.

Publication types

  • Research Support, Non-U.S. Gov't
  • Research Support, U.S. Gov't, Non-P.H.S.

MeSH terms

  • Amyloid beta-Peptides / antagonists & inhibitors*
  • Amyloid beta-Peptides / metabolism
  • Amyloid beta-Peptides / toxicity
  • Benzothiazoles
  • Cell Line, Tumor
  • Cell Survival / drug effects
  • Circular Dichroism
  • Drug Design
  • Fluorescence
  • High-Throughput Screening Assays / methods
  • Humans
  • Microscopy, Atomic Force
  • Molecular Dynamics Simulation
  • Neuroprotective Agents / chemistry
  • Neuroprotective Agents / pharmacology*
  • Oligopeptides / chemistry
  • Oligopeptides / pharmacology*
  • Protein Multimerization / drug effects
  • Surface Plasmon Resonance
  • Thiazoles

Substances

  • Amyloid beta-Peptides
  • Benzothiazoles
  • Neuroprotective Agents
  • Oligopeptides
  • Thiazoles
  • thioflavin T