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タイトル: | FXYD3 functionally demarcates an ancestral breast cancer stem cell subpopulation with features of drug-tolerant persisters |
著者: | Li, Mengjiao Nishimura, Tatsunori Takeuchi, Yasuto Hongu, Tsunaki Wang, Yuming Shiokawa, Daisuke Wang, Kang Hirose, Haruka Sasahara, Asako Yano, Masao Ishikawa, Satoko Inokuchi, Masafumi Ota, Tetsuo Tanabe, Masahiko Tada, Kei-ichiro Akiyama, Tetsu Cheng, Xi Liu, Chia-Chi Yamashita, Toshinari Sugano, Sumio Uchida, Yutaro Chiba, Tomoki Asahara, Hiroshi Nakagawa, Masahiro Sato, Shinya Miyagi, Yohei Shimamura, Teppei Nagai, Luis Augusto E. Kanai, Akinori Katoh, Manami Nomura, Seitaro Nakato, Ryuichiro Suzuki, Yutaka Tojo, Arinobu Voon, Dominic C. Ogawa, Seishi Okamoto, Koji Foukakis, Theodoros Gotoh, Noriko |
著者名の別形: | 西村, 建徳 竹内, 康人 本宮, 綱記 塩川, 大介 廣瀬, 遥香 笹原, 麻子 矢野, 正雄 石川, 聡子 井口, 雅史 太田, 哲生 田辺, 真彦 多田, 敬一郎 秋山, 徹 山下, 年成 菅野, 純夫 内田, 雄太郎 千葉, 朋希 浅原, 弘嗣 中川, 正宏 佐藤, 慎哉 宮城, 洋平 島村, 徹平 金井, 昭教 加藤, 愛巳 野村, 征太郎 中戸, 隆一郎 鈴木, 穣 東條, 有伸 小川, 誠司 岡本, 康司 後藤, 典子 |
発行日: | 15-Nov-2023 |
出版者: | American Society for Clinical Investigation |
誌名: | Journal of Clinical Investigation |
巻: | 133 |
号: | 22 |
論文番号: | e166666 |
抄録: | The heterogeneity of cancer stem cells (CSCs) within tumors presents a challenge in therapeutic targeting. To decipher the cellular plasticity that fuels phenotypic heterogeneity, we undertook single-cell transcriptomics analysis in triple-negative breast cancer (TNBC) to identify subpopulations in CSCs. We found a subpopulation of CSCs with ancestral features that is marked by FXYD domain–containing ion transport regulator 3 (FXYD3), a component of the Na⁺/K⁺ pump. Accordingly, FXYD3⁺ CSCs evolve and proliferate, while displaying traits of alveolar progenitors that are normally induced during pregnancy. Clinically, FXYD3⁺ CSCs were persistent during neoadjuvant chemotherapy, hence linking them to drug-tolerant persisters (DTPs) and identifying them as crucial therapeutic targets. Importantly, FXYD3⁺ CSCs were sensitive to senolytic Na⁺/K⁺ pump inhibitors, such as cardiac glycosides. Together, our data indicate that FXYD3⁺ CSCs with ancestral features are drivers of plasticity and chemoresistance in TNBC. Targeting the Na⁺/K⁺ pump could be an effective strategy to eliminate CSCs with ancestral and DTP features that could improve TNBC prognosis. |
記述: | 乳がんの再発を起こす原因細胞を解明. 京都大学プレスリリース. 2023-11-16. |
著作権等: | © 2023 Li et al. This work is licensed under the Creative Commons Attribution 4.0 International License. |
URI: | http://hdl.handle.net/2433/286114 |
DOI(出版社版): | 10.1172/JCI166666 |
PubMed ID: | 37966117 |
関連リンク: | https://www.kyoto-u.ac.jp/ja/research-news/2023-11-16 |
出現コレクション: | 学術雑誌掲載論文等 |

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