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

Highly Efficient Separation of Ultratrace Radioactive Copper Using a Flow Electrolysis Cell

利用流动电解池高效分离痕量放射性铜

Sugo, Yumi; Ohira, Shin-Ichi; Manabe, Hinako; Maruyama, Yo-Hei; Yamazaki, Naoaki; Miyachi, Ryoma; Toda, Kei; Ishioka, Noriko S; Mori, Masanobu

Transoral removal of a hilo-parenchymal submandibular sialolith

经口切除颌下腺门实质唾液结石

Kataoka, Yo-Hei; Kojima, Yoshihiro; Ishibashi, Ruri; Nakao, Yuji; Yamamura, Koji; Takahashi, Shotaro; Hashiba, Takafumi; Matsue, Takahito

Autophagosome formation in relation to the endoplasmic reticulum

自噬体形成与内质网的关系

Yamamoto, Yo-Hei; Noda, Takeshi

Correction: ERdj8 governs the size of autophagosomes during the formation process

更正:ERdj8 在形成过程中控制自噬体的大小

Yo-Hei Yamamoto, Ayano Kasai, Hiroko Omori, Tomoe Takino, Munechika Sugihara, Tetsuo Umemoto, Maho Hamasaki, Tomohisa Hatta, Tohru Natsume, Richard I Morimoto, Ritsuko Arai, Satoshi Waguri, Miyuki Sato, Ken Sato, Shoshana Bar-Nun, Tamotsu Yoshimori, Takeshi Noda, Kazuhiro Nagata

ERdj8 governs the size of autophagosomes during the formation process

ERdj8 在形成过程中控制自噬体的大小

Yo-Hei Yamamoto, Ayano Kasai, Hiroko Omori, Tomoe Takino, Munechika Sugihara, Tetsuo Umemoto, Maho Hamasaki, Tomohisa Hatta, Tohru Natsume, Richard I Morimoto, Ritsuko Arai, Satoshi Waguri, Miyuki Sato, Ken Sato, Shoshana Bar-Nun, Tamotsu Yoshimori, Takeshi Noda, Kazuhiro Nagata

Correction: ERdj8 governs the size of autophagosomes during the formation process

更正:ERdj8 在自噬体形成过程中控制其大小。

Yamamoto, Yo-Hei; Kasai, Ayano; Omori, Hiroko; Takino, Tomoe; Sugihara, Munechika; Umemoto, Tetsuo; Hamasaki, Maho; Hatta, Tomohisa; Natsume, Tohru; Morimoto, Richard I; Arai, Ritsuko; Waguri, Satoshi; Sato, Miyuki; Sato, Ken; Bar-Nun, Shoshana; Yoshimori, Tamotsu; Noda, Takeshi; Nagata, Kazuhiro

Starvation-induced autophagy via calcium-dependent TFEB dephosphorylation is suppressed by Shigyakusan

茯苓散可抑制通过钙依赖性 TFEB 去磷酸化引起的饥饿诱导自噬

Sumiko Ikari, Shiou-Ling Lu, Feike Hao, Kenta Imai, Yasuhiro Araki, Yo-Hei Yamamoto, Chao-Yuan Tsai, Yumi Nishiyama, Nobukazu Shitan, Tamotsu Yoshimori, Takanobu Otomo, Takeshi Noda

Publisher Correction: Dynamic structural states of ClpB involved in its disaggregation function

出版商更正:ClpB 的动态结构状态参与其解聚功能

Uchihashi, Takayuki; Watanabe, Yo-Hei; Nakazaki, Yosuke; Yamasaki, Takashi; Watanabe, Hiroki; Maruno, Takahiro; Ishii, Kentaro; Uchiyama, Susumu; Song, Chihong; Murata, Kazuyoshi; Iino, Ryota; Ando, Toshio

Dynamic structural states of ClpB involved in its disaggregation function

ClpB的动态结构状态参与其解聚功能

Uchihashi, Takayuki; Watanabe, Yo-Hei; Nakazaki, Yosuke; Yamasaki, Takashi; Watanabe, Hiroki; Maruno, Takahiro; Ishii, Kentaro; Uchiyama, Susumu; Song, Chihong; Murata, Kazuyoshi; Iino, Ryota; Ando, Toshio

Electrostatic interactions between middle domain motif-1 and the AAA1 module of the bacterial ClpB chaperone are essential for protein disaggregation

细菌ClpB分子伴侣的中间结构域基序-1与AAA1模块之间的静电相互作用对于蛋白质解聚至关重要。

Sugita, Saori; Watanabe, Kumiko; Hashimoto, Kana; Niwa, Tatsuya; Uemura, Eri; Taguchi, Hideki; Watanabe, Yo-Hei