Fragment-Based Design of Targeted Covalent Inhibitors: The Scope and Limitation of Linking Approaches.

Publication date: May 27, 2026

Linking of fragments in neighboring binding sites is one of the optimization strategies in fragment-based drug discovery, where additive or even more substantial bioactivity improvements can be realized. However, such efforts present a considerable challenge when one fragment binds covalently to the target protein, as small modifications can influence the correct positioning of the covalent warhead toward the targeted nucleophilic residue. Here, we present a case study of fragment linking that yielded single-digit micromolar, covalent inhibitors of the SARS-CoV-2 main protease, starting from fragments that were inactive in the biochemical assay. Using structural information from a recent, high-throughput crystallographic fragment screen, we show that the success of fragment linking in the design of targeted covalent inhibitors is heavily impacted by several factors, including the warhead type, the labeling chemistry, and even subtle changes in the designed linker. Notably, we observe that induced fit effects might override the original fragment orientations in the linked molecule, highlighting the need for reliable structure verification, especially in consecutive rounds of fragment elaboration.

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Concepts Keywords
Bioactivity 3C-like proteinase, SARS-CoV-2
Crystallographic 3CLpro inhibitors
Drug Antiviral Agents
Recent Antiviral Agents
Reliable Binding Sites
Coronavirus 3C Proteases
Coronavirus 3C Proteases
covalent inhibitors
Crystallography, X-Ray
Drug Design
fragment linking
Humans
Protease Inhibitors
Protease Inhibitors
SARS-CoV-2
SARS‐CoV‐2
Structure-Activity Relationship

Semantics

Type Source Name
drug DRUGBANK Spinosad

Original Article

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