Nucleic Acids Research, Vol 27, Issue 11 2299-2303, Copyright © 1999 by Oxford University Press
S Iwai, T Mizukoshi, Y Fujiwara, C Masutani, F Hanaoka and Y Hayakawa
In the solid-phase synthesis of oligonucleotides containing the
pyrimidine(6-4)pyrimidone photoproduct using a dinucleotide building block,
considerable amounts of by-products were found as the chain length
increased. The by-products were the major product when a 49mer was
synthesized on a 40 nmol scale. It was assumed that these by- products were
formed by the coupling of phosphoramidites with the N3 imino function of
the 5' component of the (6-4) photoproduct. We examined imidazolium
triflate and benzimidazolium triflate to find an alternative activator for
DNA synthesis. Imidazolium triflate prevented by-product formation to some
extent, but the coupling yields were low. Benzimidazolium triflate was
comparable to tetrazole in coupling efficiency and reduced by-product
formation to a great extent, without modification of the synthesizer
program. The obtained 49mer was used to detect proteins that recognize
UV-damaged DNA in HeLa cell extracts. Two major protein-DNA complexes were
found when a 49mer duplex was used as probe, while a 30mer duplex failed to
detect one of them. This application showed the usefulness of long chain
'damaged' oligonucleotides in biochemical studies.
ARTICLES
Benzimidazolium triflate-activated synthesis of (6-4) photoproduct- containing oligonucleotides and its application
Biomolecular Engineering Research Institute, 6-2-3 Furuedai, Suita, Osaka 565-0874, Japan. iwai@bioorg.beri.co.jp
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