Papers - NAKANO Shuuichi
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Consecutive GC base pairs determine the energy barrier of DNA duplex formation under molecularly crowded conditions Reviewed
X. Gu, S. Nakano, and N. Sugimoto
Chem. Commun. 2750 - 2752 2007.4
Joint Work
DOI: 10.1039/B702865B
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Mechanistic characterization of the HDV genomic ribozyme: A mutant of the C41 motif provides insight into positioning and thermodynamic linkage of metal ions and protons Reviewed
S. Nakano and P. C. Bevilacqua
Biochemistry 46 3001 - 3012 2007.2
Joint Work
DOI: 10.1021/bi061732s
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The roles of cosolutes on the hammerhead ribozyme activity
中野 修一
Nucleic Acids Symp. Ser. 50 81 - 82 2006.11
Joint Work
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The effect of the structure of cosolutes on the DNA duplex formation
中野 修一
Nucleic Acids Symp. Ser. 50 205 - 206 2006.11
Joint Work
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Recognition of the base pair-mimic nucleosides by DNA polymerases
中野 修一
Nucleic Acids Symp. Ser. 50 201 - 202 2006.11
Joint Work
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A DNA duplex with extremely enhanced thermal stability based on controlled immobilization on gold nanoparticles Reviewed
K. Akamatsu, M. Kimura, Y. Shibata, S. Nakano, D. Miyoshi, H. Nawafune, and N. Sugimoto
Nano Lett. 3 491 - 495 2006.1
Joint Work
DOI: 10.1021/nl0524748
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DNA base flipping by a base pair-mimic nucleoside Reviewed
S. Nakano, Y. Uotani, K. Uenishi, M. Fujii, and N. Sugimoto
Nucleic Acids Research, 33 7111 - 7119 2005.12
Single Work
DOI: 10.1093/nar/gki1018
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Conformational switch of oligonucleotides induced by spermine
中野 修一
Nucleic Acids Symp. Ser. 49 241 - 242 2005.11
Single Work
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Linkage between proton binding and folding in RNA: implications for RNA catalysis
中野 修一
Biochem. Soc. Trans. 33 466 - 470 2005.11
Single Work
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Central dogma for a molecular design based on DNA: DNB (databasing/designable nanobio) -> ENB (engineering nanobio) -> FNB (functional nanobio) Reviewed
S. Nakano and N. Sugimoto
Chemistry Letters 34 1206 - 1211 2005.7
Single Work
DOI: 10.1246/cl.2005.1206
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Site-selective RNA cleavage by DNA bearing a base pair-mimic nucleoside Reviewed
S. Nakano, Y. Uotani, K. Uenishi, M. Fujii, and N. Sugimoto
J. Am. Chem. Soc. 127 518 - 519 2005.1
Single Work
DOI: 10.1021/ja045445s
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Duplex dissociation of telomere DNAs induced by molecular crowding. Reviewed
D. Miyoshi, S. Matsumura, S. Nakano, and N. Sugimoto
J. Am. Chem. Soc. 128 165 - 169 2004.12
Single Work
DOI: 10.1021/ja036721q
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Conformational change of a nucleotide by a base-pair mimic nucleoside in the complementary DNA strand
中野 修一
Nucleic Acids Symp. Ser. 48 259 - 260 2004.11
Single Work
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Secondary structure change of oligonucleotides induced by salts
中野 修一
Nucleic Acids Symp. Ser. 48 109 - 110 2004.11
Single Work
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Stabilization of a DNA duplex under molecular crowding conditions of PEG
中野 修一
Nucleic Acids Symp. Ser. 48 107 - 108 2004.11
Single Work
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The effect of molecular crowding with nucleotide length and cosolute structure on DNA duplex stability. Reviewed
S. Nakano, H. Karimata, T. Ohmichi, J. Kawakami, and N. Sugimoto
J. Am. Chem. Soc. 126 14330 - 14331 2004.10
Single Work
DOI: 10.1021/ja0463029
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Influences of ribonucleotide on a duplex conformation and its thermal stability: Study with the chimeric RNA-DNA strands. Reviewed
S. Nakano, T. Kanzaki, and N. Sugimoto
J. Am. Chem. Soc. 126 1088 - 1095 2004.1
Single Work
DOI: 10.1021/ja037314h
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Catalytic roles for proton transfer and protonation in ribozymes: Current understanding and future possibilities. Reviewed
P. C. Bevilacqua, T. S. Brown, S. Nakano, and R. Yajima
Biopolymers 73 90 - 109 2004.1
Single Work
DOI: 10.1002/bip.10519
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Novel biomaterials derived from deoxyribozyme and napzyme.
中野 修一
Macromol. Symp. 201 245 - 252 2003.11
Single Work
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Large stacking stability of a base pair-mimic nucleotide on the DNA duplex.
中野 修一
Nucleic Acids Res. Supple. 3 79 - 80 2003.11
Single Work