Pyrimidine Nucleosides with
a Reactive (β-Chlorovinyl)sulfone
or (β-Keto)sulfone Group at the C5 Position, Their Reactions
with Nucleophiles and Electrophiles, and Their Polymerase-Catalyzed
Incorporation into DNA
Posted on 2018-04-16 - 14:23
Transition-metal-catalyzed chlorosulfonylation of 5-ethynylpyrimidine
nucleosides provided (E)-5-(β-chlorovinyl)sulfones A, which undergo nucleophilic substitution with amines or
thiols affording B. The treatment of vinyl sulfones A with ammonia followed by acid-catalyzed hydrolysis of the
intermediary β-sulfonylvinylamines gave 5-(β-keto)sulfones C. The latter reacts with electrophiles, yielding α-carbon-alkylated
or -sulfanylated analogues D. The 5′-triphosphates
of A and C were incorporated into double-stranded
DNA, using open and one-nucleotide gap substrates, by human or Escherichia coli DNA-polymerase-catalyzed reactions.
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Suzol, Sazzad
H.; Howlader, A. Hasan; Wen, Zhiwei; Ren, Yaou; Laverde, Eduardo E.; Garcia, Carol; et al. (2018). Pyrimidine Nucleosides with
a Reactive (β-Chlorovinyl)sulfone
or (β-Keto)sulfone Group at the C5 Position, Their Reactions
with Nucleophiles and Electrophiles, and Their Polymerase-Catalyzed
Incorporation into DNA. ACS Publications. Collection. https://doi.org/10.1021/acsomega.8b00584