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Molecules (Basel, Switzerland)|March 9, 2012
Site-specific incorporation of functional components into RNA by an unnatural base pair transcription systemNobuyuki Morohashi, Michiko Kimoto, Akira Sato, et al.
Nature Biotechnology|April 9, 2013
Generation of high-affinity DNA aptamers using an expanded genetic alphabetMichiko Kimoto, Rie Yamashige, Ken-ichiro Matsunaga, et al.
Journal of the American Chemical Society|October 14, 2010
A new unnatural base pair system between fluorophore and quencher base analogues for nucleic acid-based imaging technologyMichiko Kimoto, Tsuneo Mitsui, Rie Yamashige, et al.
Nucleic Acids Research|August 19, 2007
Fluorescent probing for RNA molecules by an unnatural base-pair systemMichiko Kimoto, Tsuneo Mitsui, Yoko Harada, et al.
Nucleic Acids Symposium Series (2004)|December 8, 2006
Non-hydrogen-bonded base pairs for specific transcriptionIchiro Hirao, Tsuneo Mitsui, Michiko Kimoto, et al.
Journal of the American Chemical Society|October 14, 2004
A two-unnatural-base-pair system toward the expansion of the genetic codeIchiro Hirao, Yoko Harada, Michiko Kimoto, et al.
Nature Communications|January 12, 2023
Structural basis of transcription recognition of a hydrophobic unnatural base pair by T7 RNA polymeraseJuntaek Oh, Michiko Kimoto, Haoqing Xu, et al.
ACS Synthetic Biology|April 19, 2019
DNA Sequencing Method Including Unnatural Bases for DNA Aptamer Generation by Genetic Alphabet ExpansionKiyofumi Hamashima, Yun Ting Soong, Ken-Ichiro Matsunaga, et al.
Chemistry & Biology|April 29, 2004
Site-specific incorporation of a photo-crosslinking component into RNA by T7 transcription mediated by unnatural base pairsMichiko Kimoto, Masayuki Endo, Tsuneo Mitsui, et al.
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