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Rapid and robust cysteine bioconjugation with vinylheteroarenes.


ABSTRACT: Methods for residue-selective and stable modification of canonical amino acids enable the installation of distinct functionality which can aid in the interrogation of biological processes or the generation of new therapeutic modalities. Herein, we report an extensive investigation of reactivity and stability profiles for a series of vinylheteroarene motifs. Studies on small molecule and protein substrates identified an optimum vinylheteroarene scaffold for selective cysteine modification. Utilisation of this lead linker to modify a number of protein substrates with various functionalities, including the synthesis of a homogeneous, stable and biologically active antibody-drug conjugate (ADC) was then achieved. The reagent was also efficient in labelling proteome-wide cysteines in cell lysates. The efficiency and selectivity of these reagents as well as the stability of the products makes them suitable for the generation of biotherapeutics or studies in chemical biology.

SUBMITTER: Seki H 

PROVIDER: S-EPMC8261766 | biostudies-literature | 2021 Jul

REPOSITORIES: biostudies-literature

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Rapid and robust cysteine bioconjugation with vinylheteroarenes.

Seki Hikaru H   Walsh Stephen J SJ   Bargh Jonathan D JD   Parker Jeremy S JS   Carroll Jason J   Spring David R DR  

Chemical science 20210607 26


Methods for residue-selective and stable modification of canonical amino acids enable the installation of distinct functionality which can aid in the interrogation of biological processes or the generation of new therapeutic modalities. Herein, we report an extensive investigation of reactivity and stability profiles for a series of vinylheteroarene motifs. Studies on small molecule and protein substrates identified an optimum vinylheteroarene scaffold for selective cysteine modification. Utilis  ...[more]

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2025-03-10 | GSE280181 | GEO