Biomolecular Engineering by Combinatorial Design and High-Throughput Screening: Small, Soluble Peptides That Permeabilize Membranes
- 1 July 2008
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 130 (30), 9849-9858
- https://doi.org/10.1021/ja8017863
Abstract
Rational design and engineering of membrane-active peptides remains a largely unsatisfied goal. We have hypothesized that this is due, in part, to the fact that some membrane activities, such as permeabilization, are not dependent on specific amino acid sequences or specific three-dimensional peptide structures. Instead they depend on interfacial activity: the ability of a molecule to partition into the membrane−water interface and to alter the packing and organization of lipids. Here we test that idea by taking a nonclassical approach to biomolecular engineering and design of membrane-active peptides. A 16 384-member rational combinatorial peptide library, containing peptides of 9−15 amino acids in length, was screened for soluble members that permeabilize phospholipid membranes. A stringent, two-phase, high-throughput screen was used to identify 10 unique peptides that had potent membrane-permeabilizing activity but were also water soluble. These rare and uniquely active peptides do not share any particular sequence motif, peptide length, or net charge, but instead they share common compositional features, secondary structure, and core hydrophobicity. We show that they function by a common mechanism that depends mostly on interfacial activity and leads to transient pore formation. We demonstrate here that composition−space peptide libraries coupled with function-based high-throughput screens can lead to the discovery of diverse, soluble, and highly potent membrane-permeabilizing peptides.Keywords
This publication has 52 references indexed in Scilit:
- Structure of the Alamethicin Pore Reconstructed by X-Ray Diffraction AnalysisBiophysical Journal, 2008
- A Quantitative Model for the All-or-None Permeabilization of Phospholipid Vesicles by the Antimicrobial Peptide Cecropin ABiophysical Journal, 2008
- β-Sheet Pore-Forming Peptides Selected from a Rational Combinatorial Library: Mechanism of Pore Formation in Lipid Vesicles and Activity in Biological MembranesBiochemistry, 2007
- Mechanism of the Cell-Penetrating Peptide Transportan 10 Permeation of Lipid BilayersBiophysical Journal, 2007
- Membrane perturbation effects of peptides derived from the N-termini of unprocessed prion proteinsBiochimica et Biophysica Acta (BBA) - Biomembranes, 2005
- High-throughput generation of small antibacterial peptides with improved activityNature Biotechnology, 2005
- From “carpet” mechanism to de-novo designed diastereomeric cell-selective antimicrobial peptidesPeptides, 2001
- Folding of β-sheets in membranes: specificity and promiscuity in peptide model systemsJournal of Molecular Biology, 2001
- The Preference of Tryptophan for Membrane InterfacesBiochemistry, 1998
- Folding of β-sheet membrane proteins: a hydrophobic hexapeptide modelJournal of Molecular Biology, 1998