Efficient cross-linking to cytidine by functional nucleobases capable of in situ activation
Author(s) -
Takeshi Kawasaki,
Fumi Nagatsugi,
Daisaku Usui,
M. Maeda,
Shigeki Sasaki
Publication year - 1999
Publication title -
nucleic acids symposium series
Language(s) - English
Resource type - Journals
eISSN - 1746-8272
pISSN - 0261-3166
DOI - 10.1093/nass/42.1.43
Subject(s) - cytidine , nucleoside , purine , chemistry , nucleobase , dna , reactivity (psychology) , stereochemistry , amino acid , nucleic acid , biochemistry , combinatorial chemistry , enzyme , alternative medicine , medicine , pathology
We have previously demonstrated that the ODNs with 2-amino-6-(2-phenylsulfoxyethyl)purine nucleoside derivative were capable of efficient interstrand cross-linking with cytidine selectively. In this new strategy, less reactive precursor was auto-activated within a duplex to generate 2-amino-6-vinylpurine derivative. However, it turned out that 2-amino-6-(2-phenylsulfinyl)-ethylpurine nucleoside was not applicable as the precursor for the synthesis of DNA oligomers with G-rich sequences. In this report, 2-amino-6-(2-methylsulfinylethyl)purine nucleoside has been proven to be more suitable as a precursor for DNA synthesis. In addition, the ODNs incorporating either 2-amino-6-(2-phenylsulfoxy ethyl)purine or 2-amino-6-vinylpurine showed high reactivity toward the cytidine at the target site but quite less reactivity was observed for it at non-target site, demonstrating high site-selectivity.
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