International Journal of Molecular Sciences (Sep 2023)

A Benchmark Study of Protein–Fragment Complex Structure Calculations with <i>N</i>MR<sup>2</sup>

  • Felix Torres,
  • Gabriela Stadler,
  • Witek Kwiatkowski,
  • Julien Orts

DOI
https://doi.org/10.3390/ijms241814329
Journal volume & issue
Vol. 24, no. 18
p. 14329

Abstract

Read online

Protein–fragment complex structures are particularly sought after in medicinal chemistry to rationally design lead molecules. These structures are usually derived using X-ray crystallography, but the failure rate is non-neglectable. NMR is a possible alternative for the calculation of weakly interacting complexes. Nevertheless, the time-consuming protein signal assignment step remains a barrier to its routine application. NMR Molecular Replacement (NMR2) is a versatile and rapid method that enables the elucidation of a protein–ligand complex structure. It has been successfully applied to peptides, drug-like molecules, and more recently to fragments. Due to the small size of the fragments, ca NMR2 when applied to protein–fragment complexes. The NMR2 approach has been benchmarked with the SERAPhic fragment library to identify the technical challenges in protein–fragment NMR structure calculation. A straightforward strategy is proposed to increase the method’s success rate further. The presented work confirms that NMR2 is an alternative method to X-ray crystallography for solving protein–fragment complex structures.

Keywords