Journal of Siberian Federal University. Mathematics & Physics / Optimization of Automatic Synthesis of Benzoxazole Phosphoramidate Oligonucleotides

Full text (.pdf)
Issue
Journal of Siberian Federal University. Mathematics & Physics. 2024 17 (6)
Authors
Baranoskaya, Elizaveta E.; Poddubnyakova, Sofia A.; Lomzov, Alexander A.; Vasilyeva, Svetlana V.
Contact information
Baranoskaya, Elizaveta E.: Institute of Chemical Biology and Fundamental Medicine SB RAS Novosibirsk, Russian Federation; OCRID: 0000-0001-9730-3718; Poddubnyakova, Sofia A.: Institute of Chemical Biology and Fundamental Medicine SB RAS Novosibirsk, Russian Federation; ; Lomzov, Alexander A.: Institute of Chemical Biology and Fundamental Medicine SB RAS Novosibirsk, Russian Federation; OCRID: 0000-0003-3889-9464; Vasilyeva, Svetlana V.: Institute of Chemical Biology and Fundamental Medicine SB RAS Novosibirsk, Russian Federation; OCRID: 0000-0002-3551-2458
Keywords
phosphoramidate benzoazole oligonucleotide; PABAO; automatic synthesis; Staudinger reaction
Abstract

Phosphoramidate benzoazole oligonucleotides (PABAO) are a newly developed oligonu- cleotides derivatives that carrying internucleotide N-(benzoazole)-phosphoramidate moieties. They can be obtained by the classical method of automated solid-phase phosphoramidate synthesis, in which the oxidation step is replaced by a Staudinger reaction with an azide modifier. In this work, optimization of the synthetic protocol of N-benzoxazole oligonucleotides was carried out. The optimization consisted of reducing the concentration of the azido reagent and shortening the synthesis time. With the adjustment, optimized synthesis conditions allow for a 2.5-fold decrease in benzoxazole azide consumption as well as a 20-min reduction in the time required for single modification introduction in oligonucleotide synthesis. The obtained advantages will be used for the scaled-up production of PABAOs in order to study them in biomedical applications

Pages
776–782
EDN
TECAXP
Paper at repository of SibFU
https://elib.sfu-kras.ru/handle/2311/154106