Abstract
M13 phage have provided scaffolds for nanostructure synthesis based upon self-assembled inorganic and hard materials interacting with phage-displayed peptides. Additionally, phage display has been used to identify binders to plastic, TiO(2), and other surfaces. However, synthesis of phage-based materials through the hybridization of soft materials with the phage surface remains unexplored. Here, we present an efficient "phage wrapping" strategy for the facile synthesis of phage coated with soluble, cationic polymers. Polymers bearing high positive charge densities demonstrated the most effective phage wrapping, as shown by assays for blocking nonspecific binding of the anionic phage coat to a high pI target protein. The results establish the functional group requirements for hybridizing phage with soft materials and solve a major problem in phage display-nonspecific binding by the phage to high pI target proteins.
MeSH Terms
Bacteriophage M13/drug effects,metabolism
Binding Sites/drug effects
Cations/chemical synthesis,chemistry,pharmacology
Hydrogen-Ion Concentration
Molecular Conformation/drug effects
Polymers/chemical synthesis,chemistry,pharmacology
Proteins/chemistry,metabolism
Solubility
Substrate Specificity
Surface Properties
Chemicals
Cations
Polymers
Proteins
Authors & Affiliations
13 authors, click to expand affiliations / ORCID
Lamboy Jorge A
Department of Chemistry, University of California, Irvine, California 92697, USA.
Arter Jessica A
Knopp Kristeene A
Der Denise
Overstreet Cathie M
Palermo Edmund F
Urakami Hiromitsu
Yu Ting-Bin
Tezgel Ozgul
Tew Gregory N
Guan Zhibin
Kuroda Kenichi
Weiss Gregory A
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