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Nucleic Acids Research|February 22, 2003
Putative intermediary stages for the molecular evolution from a ribozyme to a catalytic RNPYoshiya Ikawa, Kentaro Tsuda, Shigeyoshi Matsumura, et al.
Genes to Cells : Devoted to Molecular & Cellular Mechanisms|December 18, 2002
Two conserved structural components, A-rich bulge and P4 XJ6/7 base-triples, in activating the group I ribozymesYoshiya Ikawa, Takeshi Yoshimura, Hidemi Hara, et al.
Nucleic Acids Research. Supplement (2001)|August 9, 2003
Modeling of a possible evolutional process from a ribozyme to a catalytic RNPYoshiya Ikawa, Kentaro Tsuda, Shigeyoshi Matsumura, et al.
FEBS Letters|July 28, 2009
Coordinated control of a designed trans-acting ligase ribozyme by a loop-receptor interactionShigeyoshi Matsumura, Rei Ohmori, Hirohide Saito, et al.
Nature Communications|January 20, 2011
Synthetic human cell fate regulation by protein-driven RNA switchesHirohide Saito, Yoshihiko Fujita, Shunnichi Kashida, et al.
RNA (New York, N.Y.)|November 5, 2004
Generation of a catalytic module on a self-folding RNAWataru Yoshioka, Yoshiya Ikawa, Luc Jaeger, et al.
Scientific Reports|September 20, 2014
Cell-surface receptor control that depends on the size of a synthetic equilateral-triangular RNA-protein complexYoshihiko Fujita, Rie Furushima, Hirohisa Ohno, et al.
Journal of Molecular Evolution|November 15, 2011
Self-replication reactions dependent on tertiary interaction motifs in an RNA ligase ribozymeRei Ohmori, Hirohide Saito, Yoshiya Ikawa, et al.
Structure (London, England : 1993)|April 9, 2002
Design, construction, and analysis of a novel class of self-folding RNAYoshiya Ikawa, Kazutake Fukada, Shin-ichi Watanabe, et al.
Nucleic Acids Research|May 21, 2013
Quantitative and simultaneous translational control of distinct mammalian mRNAsKei Endo, James A Stapleton, Karin Hayashi, et al.
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