| Literature DB >> 26377818 |
Samir Das1, Arundhati Nag1, JingXin Liang1, David N Bunck1, Aiko Umeda1, Blake Farrow1, Matthew B Coppock2, Deborah A Sarkes2, Amethist S Finch2, Heather D Agnew3, Suresh Pitram3, Bert Lai3, Mary Beth Yu1, A Katrine Museth1, Kaycie M Deyle1, Bianca Lepe1, Frances P Rodriguez-Rivera1, Amy McCarthy1, Belen Alvarez-Villalonga1, Ann Chen1, John Heath1, Dimitra N Stratis-Cullum2, James R Heath4.
Abstract
We describe a general synthetic strategy for developing high-affinity peptide binders against specific epitopes of challenging protein biomarkers. The epitope of interest is synthesized as a polypeptide, with a detection biotin tag and a strategically placed azide (or alkyne) presenting amino acid. This synthetic epitope (SynEp) is incubated with a library of complementary alkyne or azide presenting peptides. Library elements that bind the SynEp in the correct orientation undergo the Huisgen cycloaddition, and are covalently linked to the SynEp. Hit peptides are tested against the full-length protein to identify the best binder. We describe development of epitope-targeted linear or macrocycle peptide ligands against 12 different diagnostic or therapeutic analytes. The general epitope targeting capability for these low molecular weight synthetic ligands enables a range of therapeutic and diagnostic applications, similar to those of monoclonal antibodies.Entities:
Keywords: click chemistry; combinatorial chemistry; macrocyclic ligands; metathesis; peptides
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Year: 2015 PMID: 26377818 PMCID: PMC4890538 DOI: 10.1002/anie.201505243
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336