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

Whole-Genome Analysis Reveals That the Nucleoid Protein IHF Predominantly Binds to the Replication Origin oriC Specifically at the Time of Initiation

全基因组分析表明,核仁蛋白 IHF 主要在复制起始点 oriC 上结合,特别是在启动时

Kazutoshi Kasho, Taku Oshima, Onuma Chumsakul, Kensuke Nakamura, Kazuki Fukamachi, Tsutomu Katayama

Apigenin Regulates Activation of Microglia and Counteracts Retinal Degeneration

芹菜素调节小胶质细胞的激活并抵抗视网膜变性

Onuma Chumsakul, Kanaho Wakayama, Asano Tsuhako, Yukihiro Baba, Yoshihiro Takai, Takahiro Kurose, Yoichi Honma, Sumiko Watanabe

Genome-Wide Analysis of ResD, NsrR, and Fur Binding in Bacillus subtilis during Anaerobic Fermentative Growth by In Vivo Footprinting

通过体内足迹法对枯草芽孢杆菌厌氧发酵生长过程中 ResD、NsrR 和 Fur 结合进行全基因组分析

Onuma Chumsakul, Divya P Anantsri, Tai Quirke, Taku Oshima, Kensuke Nakamura, Shu Ishikawa, Michiko M Nakano

Hyperphosphorylation of DegU cancels CcpA-dependent catabolite repression of rocG in Bacillus subtilis

DegU 的过度磷酸化取消了枯草芽孢杆菌中 CcpA 依赖的分解代谢物对 rocG 的抑制

Kosei Tanaka, Kana Iwasaki, Takuya Morimoto, Takatsugu Matsuse, Tomohisa Hasunuma, Shinji Takenaka, Onuma Chumsakul, Shu Ishikawa, Naotake Ogasawara, Ken-ichi Yoshida3

The ResD response regulator, through functional interaction with NsrR and fur, plays three distinct roles in Bacillus subtilis transcriptional control

ResD 反应调节器通过与 NsrR 和 fur 的功能性相互作用,在枯草芽孢杆菌转录控制中发挥三种不同的作用

Bernadette Henares, Sushma Kommineni, Onuma Chumsakul, Naotake Ogasawara, Shu Ishikawa, Michiko M Nakano

High-resolution mapping of in vivo genomic transcription factor binding sites using in situ DNase I footprinting and ChIP-seq

使用原位 DNase I 足迹和 ChIP-seq 对体内基因组转录因子结合位点进行高分辨率映射

Onuma Chumsakul, Kensuke Nakamura, Tetsuya Kurata, Tomoaki Sakamoto, Jon L Hobman, Naotake Ogasawara, Taku Oshima, Shu Ishikawa