A systematic method for identifying small-molecule modulators of protein–protein interactions
- Department of Chemistry, Pennsylvania State University, 414 Wartik Laboratory, University Park, PA 16802
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Contributed by Stephen J. Benkovic, September 21, 2004
Abstract
Discovering small-molecule modulators of protein–protein interactions is a challenging task because of both the generally noncontiguous, large protein surfaces that form these interfaces and the shortage of high-throughput approaches capable of identifying such rare inhibitors. We describe here a robust and flexible methodology that couples disruption of protein–protein complexes to host cell survival. The feasibility of this approach was demonstrated through monitoring a small-molecule-mediated protein–protein association (FKBP12–rapamycin–FRAP) and two cases of dissociation (homodimeric HIV-1 protease and heterodimeric ribonucleotide reductase). For ribonucleotide reductase, we identified cyclic peptide inhibitors from genetically encoded libraries that dissociated the enzyme subunits. A solid-phase synthetic strategy and peptide ELISAs were developed to characterize these inhibitors, resulting in the discovery of cyclic peptides that operate in an unprecedented manner, thus highlighting the strengths of a functional approach. The ability of this method to process large libraries, coupled with the benefits of a genetic selection, allowed us to identify rare, uniquely active small-molecule modulators of protein–protein interactions at a frequency of less than one in 10 million.
Footnotes
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↵ † To whom correspondence should be addressed. E-mail: sjb1{at}psu.edu.
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↵ * A.R.H. and S.N.S. contributed equally to this work.
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Author contributions: A.R.H., S.N.S., and S.J.B. designed research; A.R.H., S.N.S., and S.J.B. performed research; A.R.H. and S.N.S. contributed new reagents/analytical tools; A.R.H. and S.N.S. analyzed data; and A.R.H., S.N.S., and S.J.B. wrote the paper.
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Abbreviations: RR, ribonucleotide reductase; RTHS, reverse two-hybrid system; IPTG, isopropyl β-d-thiogalactoside; DMF, N,N-dimethylformamide; nickel·NTA-HRP, nickel·nitrilotriacetic acid-horseradish peroxidase; SICLOPPS, split intein-mediated circular ligation of peptides and proteins.
- Copyright © 2004, The National Academy of Sciences





