Peptide-ligand binding modeling of siRNA with cell-penetrating peptides

Biomed Res Int. 2014:2014:257040. doi: 10.1155/2014/257040. Epub 2014 Jul 24.

Abstract

The binding affinity of a series of cell-penetrating peptides (CPP) was modeled through docking and making use of the number of intermolecular hydrogen bonds, lipophilic contacts, and the number of sp3 molecular orbital hybridization carbons. The new ranking of the peptides is consistent with the experimentally determined efficiency in the downregulation of luciferase activity, which includes the peptides' ability to bind and deliver the siRNA into the cell. The predicted structures of the complexes of peptides to siRNA were stable throughout 10 ns long, explicit water molecular dynamics simulations. The stability and binding affinity of peptide-siRNA complexes was related to the sidechains and modifications of the CPPs, with the stearyl and quinoline groups improving affinity and stability. The reranking of the peptides docked to siRNA, together with explicit water molecular dynamics simulations, appears to be well suited to describe and predict the interaction of CPPs with siRNA.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Amino Acid Sequence
  • Cell-Penetrating Peptides / metabolism*
  • Ligands
  • Molecular Dynamics Simulation
  • Molecular Sequence Data
  • Peptides / metabolism*
  • Protein Binding / physiology
  • Quinolines / metabolism
  • RNA, Small Interfering / metabolism*
  • Water / metabolism

Substances

  • Cell-Penetrating Peptides
  • Ligands
  • Peptides
  • Quinolines
  • RNA, Small Interfering
  • Water
  • quinoline