4.7 Article

Rapid Electrophilic Cysteine Arylation with Pyridinium Salts

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BIOCONJUGATE CHEMISTRY
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AMER CHEMICAL SOC
DOI: 10.1021/acs.bioconjchem.2c00419

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  1. Rhode Island Institutional Development Award (IDeA) Network of Biomedical Research Excellence from the National Institute of General Medical Sciences of the National Institutes of Health [P20GM103430]
  2. National Science Foundation [CHE-2117141]

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We present a series of fluorinated cationic reagents that enable rapid arylation of cysteine under mild conditions, resulting in high reaction rates and easy application. This method allows for the direct coupling of structurally diverse phenol-containing functional motifs to cysteine residues and has potential applications in various fields.
Here, we present a series of fluorinated cationic reagents that enable rapid arylation of cysteine under mild conditions compatible with proteins and peptides. The highly polarized C-F bond and attractive nucleophile-electrophile Coulombic interactions substantially accelerate cysteine arylation, leading to unusually high rate constants on the order of 100 M-1.s(-1) and allowing for equimolar labeling of substrates at micromolar concentrations. The synthetic modularity of this approach promotes the direct coupling of structurally diverse phenol-containing functional motifs to cysteine residues of biomacromolecules with high efficiency. This user-friendly chemistry enables fast bond formation between commonly used bioconjugation partners, thus greatly streamlining the synthetic chemistry workflow, and can be easily developed as convenient kits for chemical biology and medicinal chemistry applications.

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