(13) Mismatch binding ligand upregulated back-splicing reaction producing circular RNA in a cellular model, Ni, L., Yamada, Y.; Murata, A.; Nakatani, K. Chem. Commun. 2022, 58, 3629-3632.
(12) Chemical Probing of Thymine in the TGG/CGG Triad to Explore the Deamination of 5-Methylcytosine in the CGG Repeat, Yagi, Y.; Yamada, T.; Nakatani, K. Biochemistry 2020, 59, 2679-2683. 10.1021/acs.biochem.0c00333.
(11) Assembly of ruthenium complexes on double strand DNA using mismatch binding ligand, Ni, L.; Yamada, T.; Nakatani, K. Chem. Commun. 2020, 56, 5227-5230. DOI: 10.1039/D0CC01863E.
(10) Expanding chemical space of DNA-binding molecules with three base-binding units. Yagi, Y.; Aikawa, H.; Yamada, T.; Nakatani, K. Bioorg. Med. Chem. Lett. 2018, 28, 2894-2898, DOI: 10.1016/j.bmcl.2018.07.024.
(9) Absorption Characteristics and Quantum Yields of Singlet Oxygen Generation of Thioguanosine Derivatives Shoma Miyata, Takeshi Yamada, Tasuku Isozaki, Hideyuki Sugimura, Yao−Zhong Xu, Tadashi Suzuki Photochem, Photobiol. 2018, 94, 677-684.
(8) Acid Dissociation Equilibrium and Singlet Molecular Oxygen Quantum Yield of Acetylated 6,8-Dithioguanosine in Aqueous Buffer Solution Shoma Miyata, Mina Hoshino, Tasuku Isozaki, Takeshi Yamada, Hideyuki Sugimura, Yao-Zhong Xu, Tadashi Suzuki J. Phys. Chem. B, 2018, 122, 2912-2921.
(7) CGG repeat DNA assisted dimerization of CGG/CGG binding molecule through intermolecular disulfide formation. Yamada, T.; Miki, S.; Ni, L.; Nakatani, K. Chem. Commun. 2018, 54, 13072-13075. 10.1039/C8CC06757K.
(6) Synthesis of Naphthyridine Carbamate Dimer (NCD) Derivatives Modified with an Alkane Thiol and the Binding Properties to G−G Mismatch DNA, Yamada, T.; Miki, S.; Ulhusna, A.; Michikawa, A.; Nakatani, K. Org. Lett. 2017, 19, 4163-4166, doi: 10.1021/acs.orglett.7b01632.
(5) Stereoselective access to (Z) α,γ-diazido-α,β-unsaturated esters via Lewis acid-mediated 1,3-diazidation of α,α-dimethoxy-β,γ-unsaturated esters with trimethylsilyl azide Naomi Kishii, Saeka Negishi, Takeshi Yamada, Hideyuki Sugimura, Tetrahedron Lett. 2015, 56, 2813-2816.
(4) Synthesis and Properties of Oligonucleotides Modified with 2'-O-(2-Carboxyethyl) Nucleotides and Their Carbamoyl Derivatives Takeshi Yamada, Yoshiaki Masaki, Natsuki Okaniwa, Takeshi Kanamori, Akihiro Ohkubo, Hirosuke Tsunoda, Kohji Seio, Mitsuo Sekine Org. Biomol. Chem. 2014, 12, 6457-6464.
(3) Stereoselective Formation of Tetrahydrofuran Rings via [3 + 2] Annulation: Total Synthesis of Plakortone L Hideyuki Sugimura, Shougo Sato, Kensei Tokudome, Takeshi Yamada Org. Lett. 2014, 16, 3384-3387.
(2) Versatile Site-specific Conjugation of Small Molecules to siRNA using Click Chemistry Takeshi Yamada, Chang Geng Peng, Shigeo Matsuda, Haripriya Addepalli, K. Narayanannair Jayaprakash, Md. Rowshon Alam, Kathy Mills, Martin A. Maier, Klaus Charisse, Mitsuo Sekine, Muthiah Manoharan, Kallanthottathil G. Rajeev J. Org. Chem. 2011, 76, 1198−1211.
(1) Synthesis of 2'-O-[2-(N-Methylcarbamoyl)ethyl]ribonucleosides using Oxa-Michael Reaction and Chemical and Biological Properties of Oligonucleotide Derivatives Incorporating These Modified Ribonucleosides Takeshi Yamada, Natsuki Okaniwa, Hisao Saneyoshi, Akihiro Ohkubo, Kohji Seio, Tetsuya Nagata, Yoshitsugu Aoki, Shin'ichi Takeda, Mitsuo Sekine J. Org. Chem. 2011, 76, 3042-3053.

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(2) Synthesis and properties of base or sugar modified RNA derivatives Mitsuo Sekine, Yoshiaki Masaki, Takeshi Yamada, Youdai Ishii, Keishi Yamamoto, Natsuki Okaniwa, Takeshi Kanamori, Hisashi Saneyoshi, Hirosuke Tsunoda, Akihiro Ohkubo and Kohji Seio XVIth Symposium on Chemistry of Nucleic Acid Components, Český Krumlov, 8 Jun 2014 − 13 Jun 2014. (Academy of Sciences of the Czech Republic, Institute of Organic Chemistry and Biochemistry, Czech, 2014).
(1) Synthesis and Biological Properties of 2'-O-Modified Oligoribonucleotide Derivatives Takeshi Yamada, Natsuki Okaniwa, Yoshiaki Masaki, Yasuhiro Okuno, Ryuta Miyasaka, Hiroyuki Tsunoda, Akihiro Ohkubo, Kohji Seio, Tetsuya Nagata, Yoshitsugu Aoki, Shin'ichi Takeda and Mitsuo Sekine XVth Symposium on Chemistry of Nucleic Acid Components, Český Krumlov, 5 Jun 2011 − 10 Jun 2011. (Academy of Sciences of the Czech Republic, Institute of Organic Chemistry and Biochemistry, Czech, 2011), 240-243.

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