Aug 2026· ACS Chemical Biology· 0 citations· 28 references
Medicine
Abstract
Irreversible covalent inhibitors have garnered significant attention in recent years. Despite encouraging progress, the vast majority contain electrophiles that target the least abundant amino acid cysteine, substantially limiting target inhibitor design for therapeutic intervention. Here, we generalize 2-ethynylbenzaldehyde as a proximity-induced electrophile for generating irreversible covalent peptide and protein inhibitors that specifically target native lysine residues. Leveraging this warhead, we design a covalent de novo peptide that potently engages MCL1 to block its interaction with Bak. We show it is faster, more selective, and increases potency 61-fold for MCL1 relative to a sulfonyl fluoride warhead. Additionally, with the guide of a computational script to predict ‘reactive hotspots’ at the protein level, we develop a minibinder that labels PD-L1 in vitro and in live cells, displays a slower off-rate, and potently blocks the native PD-1 and PD-L1. These results establish isoquinolinium capture as a promising strategy to inhibit protein-protein interactions and for the development of novel covalent peptide and protein therapeutics.
Design and chemistry principles of cysteine-targeting covalent inhibitors are addressed, with a focus on the diversity of electrophilic warheads currently used or under research, and established motifs are discussed alongside newfound warheads.
Mariana Castelôa, F. Borges, S. Benfeito et al.· European journal of medicina...· 0 citations
Macrocyclization strategies that generate conformationally constrained peptide scaffolds within nucleotide-encoded library screening platforms have significantly advanced the discovery of de novo bioactive peptides. We previously reported ribosomal synthesis of topologically defined thioisoindole-bridged bicyclic (TiB)...
Yue Zhang, Alexander A. Vinogradov, Keisuke Hamada et al.· Angewandte Chemie· 0 citations
Targeted covalent inhibitors can provide potent and durable target modulation, but their development has largely centered on cysteine. Lysine offers a complementary covalent handle because it is widely distributed across catalytic sites, ligand-binding pockets, allosteric regions, and protein-protein interaction interf...
Ming-Jin Luo, Lu-Yu Ma, Guo-Shun Luo et al.· Biochemical Pharmacology· 0 citations
Covalent inhibitors bind tightly and persistently to protein targets via covalent links with nucleophilic amino acids, yet unintended covalent modification of irrelevant proteins creates major safety risks and restricts their clinical use. To tackle this issue, researchers have shifted from reactivity-centered design t...
Shang-Jun Bai, Meng-Han Gao, Qi-Dong You et al.· European journal of medicina...· 0 citations
Covalent fragment approaches gained increasing attention in medicinal chemistry. Our covalent heterocyclic fragment library (Covalent MiniFrags) consisting of five and six membered heterocycles was screened against the oncogenic target KRasG12C. First, we detected the labeling of cysteine residues by Ellman's free thio...
Nikolett Péczka, Aaron B. Keeley, Péter Ábrányi-Balogh et al.· Archiv der Pharmazie· 0 citations
Macrocyclic peptides have emerged as a compelling class of therapeutics, combining the modularity and synthetic accessibility of small molecules with the high affinity and target selectivity of biologics. Their ability to engage challenging and traditionally "undruggable" protein targets-including protein-protein inter...
Krishna K. Sharma, K. Sharma, Anku Sharma et al.· Angewandte Chemie· 0 citations
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