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

UQCRC1 deficiency impairs mitophagy via PINK1-dependent mechanisms in Parkinson's disease.

UQCRC1 缺陷通过 PINK1 依赖性机制损害帕金森病中的线粒体自噬。

Li Jeng-Lin, Huang Shu-Yi, Huang Po-Yu, Fu Ssu-Ju, Tsao Yu-Jung, Chang Wenying, Hong Cheng-Li, Hung Yu-Chien, Liu Pei-Han, Lai Liang-Chuan, Lin Chin-Hsien, Chiang Wei-Chung, Chan Chih-Chiang

A New biosensor illuminates the driving force behind mitochondrial outer membrane rupture

一种新型生物传感器揭示了线粒体外膜破裂背后的驱动力

Chu, Wei-Hua; Chiang, Wei-Chung

EDC4 C-terminal domain scaffolds P-body assembly and links P-body dynamics to p53-mediated tumor suppression

EDC4 C端结构域支架蛋白促进P小体组装,并将P小体动力学与p53介导的肿瘤抑制联系起来。

Cheng, Yu-Hsuan; Chen, Ting-Wen; Chiang, Wei-Chung; Kuo, Jean-Cheng; Ho, Yi-Sheng; Noble, Michelle; Chang, Chung-Te

Galectin-3 directs mitophagy in response to Parkin-/proteasome-dependent rupture of mitochondrial outer membrane.

半乳糖凝集素-3 可响应 Parkin/蛋白酶体依赖的线粒体外膜破裂而指导线粒体自噬。

Liu Pei-Han, Lin Yu-Shan, Chu Wei-Hua, Sun Wei-Tse, Huang Po-Yu, Huang Jie-Rong, Chiang Wei-Chung

Human DCP1 is crucial for mRNA decapping and possesses paralog-specific gene regulating functions.

人类 DCP1 对 mRNA 脱帽至关重要,并具有旁系同源基因特异性调控功能

Chen Ting-Wen, Liao Hsiao-Wei, Noble Michelle, Siao Jing-Yi, Cheng Yu-Hsuan, Chiang Wei-Chung, Lo Yi-Tzu, Chang Chung-Te

Beth Levine's Legacy: From the Discovery of BECN1 to Therapies. A Mentees' Perspective

贝丝·莱文的遗产:从BECN1的发现到疗法——一位受其指导者的视角

An, Zhenyi; Chiang, Wei-Chung; Fernández, Álvaro F; Franco, Luis H; He, CongCong; Huang, Shu-Yi; Lee, Eunmyong; Liu, Yang; Sebti, Salwa; Shoji-Kawata, Sanae; Sirasanagandla, Shyam; Wang, Richard C; Wei, Yongjie; Zhao, Yuting; Vega-Rubin-de-Celis, Silvia

Novel Bcl-2 Inhibitors Selectively Disrupt the Autophagy-Specific Bcl-2-Beclin 1 Protein-Protein Interaction

新型Bcl-2抑制剂选择性地破坏自噬特异性Bcl-2-Beclin 1蛋白-蛋白相互作用

Dong, Xiaonan; Liang, Qiren; Pan, Yun-Zu; Wang, Xiaoyu; Kuo, Yi-Chun; Chiang, Wei-Chung; Zhang, Xuewu; Williams, Noelle S; Rizo, Josep; Levine, Beth; De Brabander, Jef K

Celecoxib extends C. elegans lifespan via inhibition of insulin-like signaling but not cyclooxygenase-2 activity.

塞来昔布通过抑制胰岛素样信号传导而非环氧合酶-2活性来延长秀丽隐杆线虫的寿命

Ching Tsui-Ting, Chiang Wei-Chung, Chen Ching-Shih, Hsu Ao-Lin