19 results on '"Obika, Satoshi"'
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2. Inhibiting guanine oxidation and enhancing the excess-electron-transfer efficiency of a pyrene-modified oligonucleotide by introducing an electron-donating group on pyrene
3. The crystal structure of a 2′,4′-BNANC[N–Me]-modified antisense gapmer in complex with the target RNA
4. Synthesis and properties of 2′-O,4′-C-spirocyclopropylene bridged nucleic acid (scpBNA), an analogue of 2′,4′-BNA/LNA bearing a cyclopropane ring
5. 2′,4′-BNA bearing a chiral guanidinopyrrolidine-containing nucleobase with potent ability to recognize the CG base pair in a parallel-motif DNA triplex
6. The crystal structure of a 2′,4′-BNANC[N–Me]-modified antisense gapmer in complex with the target RNA.
7. Synthesis of selenomethylene-locked nucleic acid (SeLNA)-modified oligonucleotides by polymerases
8. A 4-[(3R,4R)-dihydroxypyrrolidino]pyrimidin-2-one nucleobase for a CG base pair in triplex DNA
9. Synthesis, RNA selective hybridization and high nuclease resistance of an oligonucleotide containing novel bridged nucleic acid with cyclic urea structure
10. A novel bridged nucleoside bearing a conformationally switchable sugar moiety in response to redox changes
11. N-Methyl substituted 2′,4′-BNANC: a highly nuclease-resistant nucleic acid analogue with high-affinity RNA selective hybridization
12. Promotion of stable triplex formation by partial incorporation of 2′,5′-phosphodiester linkages into triplex-forming oligonucleotides
13. BNAs: novel nucleic acid analogs with a bridged sugar moiety
14. 3′-Amino-2′,4′-BNA: novel bridged nucleic acids having an N3′→P5′ phosphoramidate linkage
15. Facile synthesis and conformation of 3′-O,4′-C-methyleneribonucleosides
16. Synthesis and conformation of 3′-O,4′-C-methyleneribonucleosides, novel bicyclic nucleoside analogues for 2′,5′-linked oligonucleotide modification
17. Effect of the neighbouring oxygenated substituent on asymmetric reduction with Hantzsch-type 1,4-dihydropyridines having a chiral sulfinyl group
18. Guanidine bridged nucleic acid (GuNA): an effect of a cationic bridged nucleic acid on DNA binding affinity.
19. Synthesis and properties of a novel bridged nucleic acid with a P3' → N5' phosphoramidate linkage, 5'-amino-2',4'-BNA
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