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Updated: Feb 10, 2026

Author Spotlight: Characterizing Novel Enzymes from Extremophiles and Common Pathogens to Understand DNA Repair and Replication
Published on: July 5, 2024
New strategies for the synthesis of unmodified and modified oligonucleotides
Mitsuo Sekine1, Akihiro Ohkubo, Kohji Seio
1Department of Life Science, Tokyo Institute of Technology, 4259 Nagatsuta, Midoriku, Yokohama, 226-8501, Japan. msckine@bio.titech.ac.jp
Abstract:
In this paper, our recent studies on the synthesis of unmodified and modified oligonucleotides are comprehensively reviewed. We have developed a new synthetic strategy using TrS, a new 5'-protecting group, that enabled us to reduce one of the steps previously required for DNA synthesis. The "activated phosphite method" without base protection could provide a new tool for the synthesis of DNA oligomers involving base-labile functional groups such as N-acylated nucleobases capable of Watson-Crick base pairing. This new method was successfully applied to the synthesis of oligodeoxynucleotides incorporating cytosine N-oxide or adenine N-oxide that could not be synthesized by the current methods. Furthermore, several approaches we recently developed for the synthesis of several kinds of 2'-O-modified RNA oligomers will be reported.
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