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

Cell Cycle Regulation by Heat Shock Transcription Factors

热休克转录因子对细胞周期的调控

Tokunaga, Yasuko; Otsuyama, Ken-Ichiro; Hayashida, Naoki

Heat Shock Transcription Factor 2 Is Significantly Involved in Neurodegenerative Diseases, Inflammatory Bowel Disease, Cancer, Male Infertility, and Fetal Alcohol Spectrum Disorder: The Novel Mechanisms of Several Severe Diseases

热休克转录因子2与神经退行性疾病、炎症性肠病、癌症、男性不育症和胎儿酒精谱系障碍密切相关:多种严重疾病的新机制

Tokunaga, Yasuko; Otsuyama, Ken-Ichiro; Kakuta, Shigeru; Hayashida, Naoki

Structures of the antibody 64M-5 Fab and its complex with dT(6-4)T indicate induced-fit and high-affinity mechanisms

抗体 64M-5 Fab 及其与 dT(6-4)T 复合物的结构表明存在诱导契合和高亲和力机制。

Yokoyama, Hideshi; Mizutani, Ryuta; Noguchi, Shuji; Hayashida, Naoki

A Case of Thoracic Endovascular Aortic Repair Using Carotid Access with Axillary-Carotid Bypass for Descending Aortic Aneurysm in a Patient with Aortoiliac Occlusive Disease

一例主动脉髂动脉闭塞性疾病患者行胸主动脉腔内修复术,采用颈动脉入路联合腋颈动脉旁路术治疗降主动脉瘤的病例报告

Asano, Soichi; Hayashida, Naoki; Shibata, Yusuke; Koizumi, Shintaro; Ito, Takahiro; Ikeuchi, Hiroki; Hasegawa, Hideomi; Abe, Shinichiro; Kabasawa, Masashi; Hirose, Nobuyuki; Ohba, Masanao; Hirano, Masao; Matsuo, Kozo; Murayama, Hirokazu

Non-Hsp genes are essential for HSF1-mediated maintenance of whole body homeostasis.

非Hsp基因对于HSF1介导的维持全身稳态至关重要

Hayashida, Naoki

Transcription factor cooperativity with heat shock factor 1

转录因子与热休克因子1的协同作用

Hayashida, Naoki; Fujimoto, Mitsuaki; Nakai, Akira

Heat shock factor 2 is required for maintaining proteostasis against febrile-range thermal stress and polyglutamine aggregation

热休克因子2对于维持蛋白质稳态,抵抗发热范围内的热应激和多聚谷氨酰胺聚集至关重要。

Shinkawa, Toyohide; Tan, Ke; Fujimoto, Mitsuaki; Hayashida, Naoki; Yamamoto, Kaoru; Takaki, Eiichi; Takii, Ryosuke; Prakasam, Ramachandran; Inouye, Sachiye; Mezger, Valerie; Nakai, Akira

Heat shock factor 1 ameliorates proteotoxicity in cooperation with the transcription factor NFAT

热休克因子1与转录因子NFAT协同作用,减轻蛋白毒性。

Hayashida, Naoki; Fujimoto, Mitsuaki; Tan, Ke; Prakasam, Ramachandran; Shinkawa, Toyohide; Li, Liangping; Ichikawa, Hitoshi; Takii, Ryosuke; Nakai, Akira

A novel mouse HSF3 has the potential to activate nonclassical heat-shock genes during heat shock.

一种新型小鼠 HSF3 有可能在热休克期间激活非经典热休克基因

Fujimoto Mitsuaki, Hayashida Naoki, Katoh Takuma, Oshima Kouji, Shinkawa Toyohide, Prakasam Ramachandran, Tan Ke, Inouye Sachiye, Takii Ryosuke, Nakai Akira

Analysis of HSF4 binding regions reveals its necessity for gene regulation during development and heat shock response in mouse lenses

对 HSF4 结合区域的分析揭示了其在小鼠晶状体发育和热休克反应过程中基因调控的必要性

Fujimoto, Mitsuaki; Oshima, Koji; Shinkawa, Toyohide; Wang, Bei Bei; Inouye, Sachiye; Hayashida, Naoki; Takii, Ryosuke; Nakai, Akira