Biophysical Mimicry of Lung Surfactant Protein B by Random Nylon-3 Copolymers
- 20 May 2010
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 132 (23) , 7957-7967
- https://doi.org/10.1021/ja909734n
Abstract
Non-natural oligomers have recently shown promise as functional analogues of lung surfactant proteins B and C (SP-B and SP-C), two helical and amphiphilic proteins that are critical for normal respiration. The generation of non-natural mimics of SP-B and SP-C has previously been restricted to step-by-step, sequence-specific synthesis, which results in discrete oligomers that are intended to manifest specific structural attributes. Here we present an alternative approach to SP-B mimicry that is based on sequence-random copolymers containing cationic and lipophilic subunits. These materials, members of the nylon-3 family, are prepared by ring-opening polymerization of β-lactams. The best of the nylon-3 polymers display promising in vitro surfactant activities in a mixed lipid film. Pulsating bubble surfactometry data indicate that films containing the most surface-active polymers attain adsorptive and dynamic-cycling properties that surpass those of discrete peptides intended to mimic SP-B. Attachment of an N-terminal octadecanoyl unit to the nylon-3 copolymers, inspired by the post-translational modifications found in SP-C, affords further improvements by reducing the percent surface area compression to reach low minimum surface tension. Cytotoxic effects of the copolymers are diminished relative to that of an SP-B-derived peptide and a peptoid-based mimic. The current study provides evidence that sequence-random copolymers can mimic the in vitro surface-active behavior of lung surfactant proteins in a mixed lipid film. These findings raise the possibility that random copolymers might be useful for developing a lung surfactant replacement, which is an attractive prospect given that such polymers are easier to prepare than are sequence-specific oligomers.Keywords
This publication has 62 references indexed in Scilit:
- Close mimicry of lung surfactant protein B by “clicked” dimers of helical, cationic peptoidsPeptide Science, 2009
- Foldamers with Heterogeneous BackbonesAccounts of Chemical Research, 2008
- Dual Mechanism of Bacterial Lethality for a Cationic Sequence-Random Copolymer that Mimics Host-Defense Antimicrobial PeptidesJournal of Molecular Biology, 2008
- Mapping and Analysis of the Lytic and Fusogenic Domains of Surfactant Protein BBiochemistry, 2004
- Two Helical Conformations from a Single Foldamer Backbone: “Split Personality” in Short α/β‐PeptidesAngewandte Chemie International Edition in English, 2004
- Ring-opening polymerization of lactams. Living anionic polymerization and its applicationsProgress in Polymer Science, 2000
- Distribution of the Surfactant-Associated Protein C within a Lung Surfactant Model Film Investigated by Near-Field Optical MicroscopyBiophysical Journal, 2000
- Neutralization of the Positive Charges of Surfactant Protein CPublished by Elsevier ,1995
- An amphipathic helical motif common to tumourolytic polypeptide NK‐lysin and pulmonary surfactant polypeptide SP‐BFEBS Letters, 1995
- Solid Phase Peptide Synthesis. I. The Synthesis of a TetrapeptideJournal of the American Chemical Society, 1963