研究者
J-GLOBAL ID:200901095503705361
更新日: 2024年10月10日
法喜 ゆう子
ホウキ ユウコ | Hoki Yuko
所属機関・部署:
職名:
研究員
論文 (15件):
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Ryoko Araki, Tomo Suga, Yuko Hoki, Kaori Imadome, Misato Sunayama, Satoshi Kamimura, Mayumi Fujita, Masumi Abe. iPS cell generation-associated point mutations include many C > T substitutions via different cytosine modification mechanisms. Nature communications. 2024. 15. 1. 4946-4946
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Satoshi Kamimura, Tomo Suga, Yuko Hoki, Misato Sunayama, Kaori Imadome, Mayumi Fujita, Miki Nakamura, Ryoko Araki, Masumi Abe. Insertion/deletion and microsatellite alteration profiles in induced pluripotent stem cells. Stem cell reports. 2021. 16. 10. 2503-2519
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Ryoko Araki, Yuko Hoki, Tomo Suga, Chizuka Obara, Misato Sunayama, Kaori Imadome, Mayumi Fujita, Satoshi Kamimura, Miki Nakamura, Sayaka Wakayama, et al. Genetic aberrations in iPSCs are introduced by a transient G1/S cell cycle checkpoint deficiency. Nature communications. 2020. 11. 1. 197-197
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Christopher P Allen, Hirokazu Hirakawa, Nakako Izumi Nakajima, Sophia Moore, Jingyi Nie, Neelam Sharma, Mayumi Sugiura, Yuko Hoki, Ryoko Araki, Masumi Abe, et al. Low- and High-LET Ionizing Radiation Induces Delayed Homologous Recombination that Persists for Two Weeks before Resolving. Radiation research. 2017. 188. 1. 82-93
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Ryoko Araki, Eiji Mizutani, Yuko Hoki, Misato Sunayama, Sayaka Wakayama, Hiroaki Nagatomo, Yasuji Kasama, Miki Nakamura, Teruhiko Wakayama, Masumi Abe. The Number of Point Mutations in Induced Pluripotent Stem Cells and Nuclear Transfer Embryonic Stem Cells Depends on the Method and Somatic Cell Type Used for Their Generation. Stem cells (Dayton, Ohio). 2017. 35. 5. 1189-1196
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MISC (3件):
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KAMIMURA Satoshi, SUGA Tomo, HOKI Yuko, SUNAYAMA Misato, IMADOME Kaori, FUJITA Mayumi, NAKAMURA Miki, ARAKI Ryoko, ABE Masumi. iPS細胞におけるマイクロサテライト異常. 日本分子生物学会年会プログラム・要旨集(Web). 2021. 44th
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荒木 良子, 法喜 ゆう子, 菅 智, 砂山 美里, 今留 香織, 上村 悟氏, 中村 美樹, 藤田 真由美, 安倍 真澄. ヒトiPS細胞樹立におけるゲノム変異とその機構. 日本毒性学会学術年会. 2021. 48.1. S3-3
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Araki R, Sugiura M, Hoki Y, Sunayama M, Nakamura M, Kasama Y, Abe M. Induced pluripotent stem cell generation-associated point mutations. Inflammation and Regeneration. 2015. 35. 5. 226-232
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