A systematic method for identifying small-molecule modulators of protein–protein interactions

  1. Alexander R. Horswill*,
  2. Sergey N. Savinov*, and
  3. Stephen J. Benkovic
  1. Department of Chemistry, Pennsylvania State University, 414 Wartik Laboratory, University Park, PA 16802
  1. 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

  • To whom correspondence should be addressed. E-mail: sjb1{at}psu.edu.

  • * A.R.H. and S.N.S. contributed equally to this work.

  • 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.

  • 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.

« Previous | Next Article »Table of Contents