On-Resin Recognition of Aromatic Oligopeptides and Proteins through Host-Enhanced Heterodimerization
Author(s) -
Xiaoyi Chen,
Zehuan Huang,
Renata L. Sala,
Alan McLean,
Guanglu Wu,
Kamil Sokołowski,
Katie King,
Jade A. McCune,
Oren A. Scherman
Publication year - 2022
Publication title -
journal of the american chemical society
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 7.115
H-Index - 612
eISSN - 1520-5126
pISSN - 0002-7863
DOI - 10.1021/jacs.2c02287
Subject(s) - chemistry , supramolecular chemistry , peptide , oligopeptide , molecular recognition , combinatorial chemistry , host (biology) , amino acid , computational biology , molecule , biochemistry , organic chemistry , ecology , biology
Peptide dimerization is ubiquitous in natural protein conjugates and artificial self-assemblies. A major challenge in artificial systems remains achieving quantitative peptide heterodimerization, critical for next-generation biomolecular purification and formulation of therapeutics. Here, we employ a synthetic host to simultaneously encapsulate an aromatic and a noncanonical l-perfluorophenylalanine-containing peptide through embedded polar-π interactions, constructing an unprecedented series of heteropeptide dimers. To demonstrate the utility, this heteropeptide dimerization strategy was applied toward on-resin recognition of N -terminal aromatic residues in peptides as well as insulin, both exhibiting high recycling efficiency (>95%). This research unveils a generic approach to exploit quantitative heteropeptide dimers for the design of supramolecular (bio)systems.
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