8g69 Citations

Discovery and Validation of the Binding Poses of Allosteric Fragment Hits to Protein Tyrosine Phosphatase 1b: From Molecular Dynamics Simulations to X-ray Crystallography.

OpenAccess logo J Chem Inf Model (2023)
Related entries: 8g65, 8g67, 8g68, 8g6a

Cited: 6 times
EuropePMC logo PMID: 37086179

Abstract

Fragment-based drug discovery has led to six approved drugs, but the small sizes of the chemical fragments used in such methods typically result in only weak interactions between the fragment and its target molecule, which makes it challenging to experimentally determine the three-dimensional poses fragments assume in the bound state. One computational approach that could help address this difficulty is long-timescale molecular dynamics (MD) simulations, which have been used in retrospective studies to recover experimentally known binding poses of fragments. Here, we present the results of long-timescale MD simulations that we used to prospectively discover binding poses for two series of fragments in allosteric pockets on a difficult and important pharmaceutical target, protein tyrosine phosphatase 1b (PTP1b). Our simulations reversibly sampled the fragment association and dissociation process. One of the binding pockets found in the simulations has not to our knowledge been previously observed with a bound fragment, and the other pocket adopted a very rare conformation. We subsequently obtained high-resolution crystal structures of members of each fragment series bound to PTP1b, and the experimentally observed poses confirmed the simulation results. To the best of our knowledge, our findings provide the first demonstration that MD simulations can be used prospectively to determine fragment binding poses to previously unidentified pockets.

Articles - 8g69 mentioned but not cited (4)

  1. Letter Discovery and Validation of the Binding Poses of Allosteric Fragment Hits to Protein Tyrosine Phosphatase 1b: From Molecular Dynamics Simulations to X-ray Crystallography. Greisman JB, Willmore L, Yeh CY, Giordanetto F, Shahamadtar S, Nisonoff H, Maragakis P, Shaw DE. J Chem Inf Model 63 2644-2650 (2023)
  2. High-resolution double vision of the allosteric phosphatase PTP1B. Sharma S, Skaist Mehlman T, Sagabala RS, Boivin B, Keedy DA. Acta Crystallogr F Struct Biol Commun 80 1-12 (2024)
  3. research-article An expanded view of ligandability in the allosteric enzyme PTP1B from computational reanalysis of large-scale crystallographic data. Mehlman TS, Ginn HM, Keedy DA. bioRxiv 2024.01.05.574428 (2024)
  4. research-article Native dynamics and allosteric responses in PTP1B probed by high-resolution HDX-MS. Woods VA, Abzalimov RR, Keedy DA. bioRxiv 2023.07.12.548582 (2023)


Articles citing this publication (2)

  1. A Conserved Local Structural Motif Controls the Kinetics of PTP1B Catalysis. Yeh CY, Izaguirre JA, Greisman JB, Willmore L, Maragakis P, Shaw DE. J Chem Inf Model 63 4115-4124 (2023)
  2. Biophysical Rationale for the Selective Inhibition of PTP1B over TCPTP by Nonpolar Terpenoids. Friedman AJ, Padgette HM, Kramer L, Liechty ET, Donovan GW, Fox JM, Shirts MR. J Phys Chem B 127 8305-8316 (2023)