Issue 31, 2023

Fragment expansion with NUDELs – poised DNA-encoded libraries

Abstract

Optimisation of the affinity of lead compounds is a critical challenge in the identification of drug candidates and chemical probes and is a process that takes many years. Fragment-based drug discovery has become established as one of the methods of choice for drug discovery starting with small, low affinity compounds. Due to their low affinity, the evolution of fragments to desirable levels of affinity is often a key challenge. The accepted best method for increasing the potency of fragments is by iterative fragment growing, which can be very time consuming and complex. Here, we introduce a paradigm for fragment hit optimisation using poised DNA-encoded chemical libraries (DELs). The synthesis of a poised DEL, a partially constructed library that retains a reactive handle, allows the coupling of any active fragment for a specific target protein, allowing rapid discovery of potent ligands. This is illustrated for bromodomain-containing protein 4 (BRD4), in which a weakly binding fragment was coupled to a 42-member poised DEL via Suzuki–Miyaura cross coupling resulting in the identification of an inhibitor with 51 nM affinity in a single step, representing an increase in potency of several orders of magnitude from an original fragment. The potency of the compound was shown to arise from the synergistic combination of substructures, which would have been very difficult to discover by any other method and was rationalised by X-ray crystallography. The compound showed attractive lead-like properties suitable for further optimisation and demonstrated BRD4-dependent cellular pharmacology. This work demonstrates the power of poised DELs to rapidly optimise fragments, representing an attractive generic approach to drug discovery.

Graphical abstract: Fragment expansion with NUDELs – poised DNA-encoded libraries

Supplementary files

Article information

Article type
Edge Article
Submitted
03 Mar 2023
Accepted
11 Jul 2023
First published
12 Jul 2023
This article is Open Access

All publication charges for this article have been paid for by the Royal Society of Chemistry
Creative Commons BY-NC license

Chem. Sci., 2023,14, 8288-8294

Fragment expansion with NUDELs – poised DNA-encoded libraries

C. L. A. Salvini, B. Darlot, J. Davison, M. P. Martin, S. J. Tudhope, S. Turberville, A. Kawamura, M. E. M. Noble, S. R. Wedge, J. J. Crawford and M. J. Waring, Chem. Sci., 2023, 14, 8288 DOI: 10.1039/D3SC01171B

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