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

Procyanidin Capsules Combat ALF by Restoring Mitochondrial Homeostasis and Inhibiting Necroptosis via the PGAM5/DRP1/PINK1 Pathway

原花青素胶囊通过PGAM5/DRP1/PINK1通路恢复线粒体稳态并抑制坏死性凋亡来对抗急性肝衰竭。

Shi, Qing; Wu, Minmin; Zhong, Jinwei; Chen, Chao; Huang, Zhuang; Peng, Jingxuan; Yang, Dong; Zan, Xingjie; Wang, Zhengfei

PINK1/Parkin promotes liver regeneration via Sigma-1 ubiquitination to inhibit ER-Mitochondrial calcium transfer

PINK1/Parkin 通过 Sigma-1 泛素化抑制内质网-线粒体钙转移,从而促进肝脏再生。

Xu, Jian; Wang, Yuechen; Zhong, Weizhe; Hu, Haoran; Zhang, Ye; Gao, Yiyun; Wang, Ping; Rao, Zhuqing; Zhou, Haoming; Wang, Xuehao

ASCT2 palmitoylation regulated by JNK1-ZDHHC14 axis orchestrates glutamine metabolism and NSCLC progression.

ASCT2 棕榈酰化受 JNK1-ZDHHC14 轴调控,协调谷氨酰胺代谢和非小细胞肺癌进展。

Targeting CDC42 Protects Mitochondrial Function through KLF2/HIF-1α/PINK1 Signaling in Acute Kidney Injury.

靶向 CDC42 通过 KLF2/HIF-1α/PINK1 信号通路保护急性肾损伤中的线粒体功能。

Zhou Xue, Fu Xian, Meng Yi-Wen, Dai Ping, Jiang Qing, Yin Hou-Hua, Pan Qing-Jin, Lin Ai-Zhi, Ni Kai-Di, Luo Zi-Guo, Liang Ru-Yu, Chen Yi-Yu, Yuan Hai-Xin, Liu Jun-Yan

Malic enzyme 2 suppresses PINK1-Parkin-mediated mitophagy by stabilizing ATAD3A via competitive interaction with TRIM25

苹果酸酶2通过与TRIM25竞争性相互作用稳定ATAD3A,从而抑制PINK1-Parkin介导的线粒体自噬。

Liu, Qian; Su, Lei; Wei, Xiaoyun; Lin, Shijie; Huang, Lingkai; Hou, Lige; Wang, Yanhong; Hu, Liubing; Tan, Junyang; Qiao, Jing; Zhou, Qinghua; Ma, Yi; Wang, Wenjun; Li, Jianshuang

PHGDH phosphorylation mediated by WNK1 serves as a dual marker of metabolic vulnerability and responsiveness to oxaliplatin treatment

WNK1介导的PHGDH磷酸化可作为代谢脆弱性和对奥沙利铂治疗反应性的双重标志物。

Fang, Shaobo; Jin, Guoguo; Yan, Mingyang; Song, Yanming; Zhao, Simin; Zhang, Chengjuan; Shao, Yang; Zhao, Kexin; Liu, Meng; Wang, Zhenwei; Jia, Xinyang; Guo, Qinxin; Guo, Manman; Wang, Meiyun; Guo, Zhiping; Dong, Zigang

Visualizing PINK1 Activity Dynamics in Single Cells with a Phase Separation-Based Kinase Activity Reporter.

利用基于相分离的激酶活性报告器可视化单细胞中 PINK1 活性动态。

Vineall Katie G, Andrikopoulos Alexia, Sun Michael J, Yan Anna, Hartanto Ethan R, Schmitt Danielle L

Topical NAMPT activation restores mitophagic flux to rescue diabetic keratopathy via the NAD⁺/PINK1 pathway.

局部激活 NAMPT 可恢复线粒体自噬通量,通过 NADâ º/PINK1 通路挽救糖尿病性角膜病变。

Guo Qian, Huang Guannan, Li Wanting, Ma Yunjing, Liu Haini, Liu Zihao, Zhu Limin, Ma Lechong, Zhou Qingjun, Zhao Shaozhen

A unified mechanism for mitochondrial damage sensing in PINK1-Parkin-mediated mitophagy.

PINK1-Parkin介导的线粒体自噬中线粒体损伤感知的统一机制。

Thayer Julia A, Petersen Jennifer D, Huang Xiaoping, Gruel Budet Luiza M, Hawrot James, Ramos Daniel M, Sekine Shiori, Li Yan, Ward Michael E, Narendra Derek P

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