Rchr
J-GLOBAL ID:201401031651286590   Update date: Jan. 30, 2024

Fujita Yoshihiko

Fujita Yoshihiko
Research field  (1): Applied microbiology
Research theme for competitive and other funds  (1):
  • 2021 - 2024 The mechanism for promoting the resetting efficiency of naive-like cell by low-expression microRNA
Papers (6):
  • Yoshihiko Fujita, Takeru Kameda, Chingakham Ranjit Singh, Whitney Pepper, Ariana Cecil, Madelyn Hilgers, Mackenzie Thornton, Izumi Asano, Carter Moravek, Yuichi Togashi, et al. Translational recoding by chemical modification of non-AUG start codon ribonucleotide bases. Science advances. 2022. 8. 14. eabm8501
  • Yoshihiko Fujita, Takeru Kameda, Chingakham Ranjit Singh, Whitney Pepper, Ariana Cecil, Madelyn Hilgers, Mackenzie Thornton, Izumi Asano, Carter Moravek, Yuichi Togashi, et al. Translational recoding by chemical modification of non-AUG start codon ribonucleotide bases. Science Advances. 2022. 8. 14
  • Yoshihiko Fujita, Moe Hirosawa, Karin Hayashi, Takeshi Hatani, Yoshinori Yoshida, Takuya Yamamoto, Hirohide Saito. A versatile and robust cell purification system with an RNA-only circuit composed of microRNA-responsive ON and OFF switches. Science advances. 2022. 8. 1. eabj1793
  • Junya Akagi, Takahiro Yamada, Kumi Hidaka, Yoshihiko Fujita, Hirohide Saito, Hiroshi Sugiyama, Masayuki Endo, Shigeyoshi Matsumura, Yoshiya Ikawa. An RNA Triangle with Six Ribozyme Units Can Promote a Trans-Splicing Reaction through Trimerization of Unit Ribozyme Dimers. Applied Sciences. 2021. 11. 6. 2583-2583
  • Moe Hirosawa, Yoshihiko Fujita, Hirohide Saito. Cell-Type-Specific CRISPR Activation with MicroRNA-Responsive AcrllA4 Switch. ACS synthetic biology. 2019. 8. 7. 1575-1582
more...
MISC (6):
  • 山縣茉莉, 山縣茉莉, 弘澤萌, 藤田祥彦, 齊藤博英. RNAを用いた高効率なヒトiPS細胞の作製に向けて. 日本分子生物学会年会プログラム・要旨集(Web). 2019. 42nd
  • 山縣茉莉, 山縣茉莉, 弘澤萌, 弘澤萌, 松浦理史, 松浦理史, 藤田祥彦, 齊藤博英. RNAを用いた高効率なiPS細胞の作製に向けて. 日本分子生物学会年会プログラム・要旨集(Web). 2018. 41st
  • Kazuya Hashimoto, Satoshi Matsuura, Yoshihiko Fujita, Karin Hayashi, Naoshi Sugimoto, Takuya Yamamoto, Hirohide Saito, Koji Eto. Synthetic miRNA Switch Technology Elucidates Heterogeneity in Regulation of Immortalized Megakaryocyte Cell Lines, Associated with Improvement of Platelet Generation Efficiency for Clinical Use. BLOOD. 2016. 128. 22
  • Synthetic Biology of Translational Regulation. 2015. 34. 8. 783-789
  • Tan Inoue, Shunichi Kashida, Yoshihiko Fujita, Hirohide Saito. DESIGN OF PROTEIN-RESPONSIVE shRNA SYSTEM FOR TRANSLATIONAL CONTROL IN HUMAN CELL. NUCLEIC ACID THERAPEUTICS. 2011. 21. 5. A35-A35
more...
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