日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

H3K27 and H3K9 methylation mask potential CTCF binding sites to maintain 3D genome integrity

H3K27 和 H3K9 甲基化掩盖了潜在的 CTCF 结合位点,从而维持基因组的三维完整性。

Fukuda, Kei; Shimura, Chikako; Shinkai, Yoichi

H3K27me3 and the PRC1-H2AK119ub pathway cooperatively maintain heterochromatin and transcriptional silencing after the loss of H3K9 methylation.

H3K27me3 和 PRC1-H2AK119ub 通路在 H3K9 甲基化丧失后协同维持异染色质和转录沉默

Fukuda Kei, Shimura Chikako, Shinkai Yoichi

Generation of heterozygous PKD1 mutant pigs exhibiting early-onset renal cyst formation

产生早发性肾囊肿形成的杂合 PKD1 突变猪

Masahito Watanabe, Kazuhiro Umeyama, Kazuaki Nakano, Hitomi Matsunari, Toru Fukuda, Kei Matsumoto, Susumu Tajiri, Shuichiro Yamanaka, Koki Hasegawa, Kazutoshi Okamoto, Ayuko Uchikura, Shuko Takayanagi, Masaki Nagaya, Takashi Yokoo, Hiromitsu Nakauchi, Hiroshi Nagashima

Potential role of KRAB-ZFP binding and transcriptional states on DNA methylation of retroelements in human male germ cells

KRAB-ZFP结合和转录状态对人类男性生殖细胞中逆转录元件DNA甲基化的潜在作用

Fukuda, Kei; Makino, Yoshinori; Kaneko, Satoru; Shimura, Chikako; Okada, Yuki; Ichiyanagi, Kenji; Shinkai, Yoichi

A Pilot Study on the Effect of Anti-Thrombopoietin Antibody on Platelet Count in Patients with Type 2 Diabetes

抗血小板生成素抗体对2型糖尿病患者血小板计数影响的初步研究

Takuya Fukuda, Masahide Hamaguchi, Takafumi Osaka, Yoshitaka Hashimoto, Emi Ushigome, Mai Asano, Masahiro Yamazaki, Eriko Fukuda, Kei Yamaguchi, Koji Ogawa, Naoki Goshima, Michiaki Fukui

SETDB1-Mediated Silencing of Retroelements

SETDB1介导的逆转录元件沉默

Fukuda, Kei; Shinkai, Yoichi

A CRISPR knockout screen identifies SETDB1-target retroelement silencing factors in embryonic stem cells

CRISPR基因敲除筛选鉴定出胚胎干细胞中SETDB1靶向逆转录元件沉默因子

Fukuda, Kei; Okuda, Akihiko; Yusa, Kosuke; Shinkai, Yoichi

Locus-specific hypomethylation of the mouse IAP retrotransposon is associated with transcription factor-binding sites

小鼠IAP逆转录转座子的位点特异性低甲基化与转录因子结合位点相关。

Shimosuga, Ken-Ichi; Fukuda, Kei; Sasaki, Hiroyuki; Ichiyanagi, Kenji

Improved design of hammerhead ribozyme for selective digestion of target RNA through recognition of site-specific adenosine-to-inosine RNA editing

通过识别位点特异性腺苷到肌苷 RNA 编辑来改进锤头状核酶的设计,用于选择性消化目标 RNA

Masatora Fukuda, Kei Kurihara, Shota Yamaguchi, Yui Oyama, Masanobu Deshimaru