Rchr
J-GLOBAL ID:201801005980915107   Update date: Jan. 30, 2024

Kurayoshi Kenta

Kurayoshi Kenta
Research field  (1): Tumor biology
Research theme for competitive and other funds  (2):
  • 2021 - 2023 リソソーム代謝経路が規定する白血病幹細胞の未分化性維持機構の解明
  • 2019 - 2021 Identification of regulator of differentiation of leukemia stem cell using genome editing system
Papers (5):
  • Kenta Kurayoshi, Yusuke Takase, Masaya Ueno, Kumiko Ohta, Kyoko Fuse, Shuji Ikeda, Takayoshi Watanabe, Yuki Nishida, Shin-Ichi Horike, Kazuyoshi Hosomichi, et al. Targeting cis-regulatory elements of FOXO family is a novel therapeutic strategy for induction of leukemia cell differentiation. Cell death & disease. 2023. 14. 9. 642-642
  • Loc Thi Pham, Hui Peng, Masaya Ueno, Susumu Kohno, Atuso Kasada, Kazuyoshi Hosomichi, Takehiro Sato, Kenta Kurayoshi, Masahiko Kobayashi, Yuko Tadokoro, et al. RHEB is a potential therapeutic target in T cell acute lymphoblastic leukemia. Biochemical and Biophysical Research Communications. 2022. 621. 74-79
  • Yongwei Jing, Masahiko Kobayashi, Ha Thi Vu, Atsuko Kasahara, Xi Chen, Loc Thi Pham, Kenta Kurayoshi, Yuko Tadokoro, Masaya Ueno, Tomoki Todo, et al. Therapeutic advantage of targeting lysosomal membrane integrity supported by lysophagy in malignant glioma. Cancer Science. 2022. 113. 8. 2716-2726
  • Naho Nomura, Chiaki Ito, Takako Ooshio, Yuko Tadokoro, Susumu Kohno, Masaya Ueno, Masahiko Kobayashi, Atsuko Kasahara, Yusuke Takase, Kenta Kurayoshi, et al. Essential role of autophagy in protecting neonatal haematopoietic stem cells from oxidative stress in a p62-independent manner. Scientific reports. 2021. 11. 1. 1666-1666
  • Masaya Ueno, Takuya Tomita, Hiroshi Arakawa, Takahiro Kakuta, Tada-aki Yamagishi, Jumpei Terakawa, Takiko Daikoku, Shin-ichi Horike, Sha Si, Kenta Kurayoshi, et al. Pillar[6]arene acts as a biosensor for quantitative detection of a vitamin metabolite in crude biological samples. Communications Chemistry. 2020. 3. 1
Books (2):
  • Gene Expression and Regulation in Mammalian Cells: The key role of E2F in tumor suppression through specific regulation of tumor suppressor genes specifically in response to oncogenic changes
    InTech Open Access Publisher 2018
  • Deregulated E2F Activity: Novel Targets and Therapeutic Potential in Cancer Treatment.
    International Biology Review 2016
Association Membership(s) (2):
日本分子生物学会 ,  日本癌学会
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