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

RHOA regulates mitochondria-ER contact sites through modulation of the VAPB/PTPIP51 tether.

RHOA 通过调节 VAPB/PTPIP51 连接来调节线粒体-内质网接触位点。

Yang Zheng, Nakajima Shintaro, Chen Hsiuchen, Chakrabarty Yogaditya, Feng Huibao, Chan David C

ER-associated CTRP1 regulates mitochondrial fission via interaction with DRP1

内质网相关蛋白CTRP1通过与DRP1相互作用调节线粒体分裂。

Sonn, Seong Keun; Seo, Seungwoon; Yang, Jaemoon; Oh, Ki Sook; Chen, Hsiuchen; Chan, David C; Rhee, Kunsoo; Lee, Kyung S; Yang, Young; Oh, Goo Taeg

Removal of the Mitochondrial Fission Factor Mff Exacerbates Neuronal Loss and Neurological Phenotypes in a Huntington's Disease Mouse Model

去除线粒体分裂因子Mff会加剧亨廷顿病小鼠模型中的神经元丢失和神经系统表型

Cha, Moon Yong; Chen, Hsiuchen; Chan, David

Mitochondrial Dynamics in Regulating the Unique Phenotypes of Cancer and Stem Cells

线粒体动力学在调控癌症和干细胞独特表型中的作用

Chen, Hsiuchen; Chan, David C

Metabolism. AMP-activated protein kinase mediates mitochondrial fission in response to energy stress

代谢。AMP激活蛋白激酶介导线粒体在能量应激反应中的分裂。

Toyama, Erin Quan; Herzig, Sébastien; Courchet, Julien; Lewis, Tommy L Jr; Losón, Oliver C; Hellberg, Kristina; Young, Nathan P; Chen, Hsiuchen; Polleux, Franck; Chan, David C; Shaw, Reuben J

Mitochondrial dynamics--fusion, fission, movement, and mitophagy--in neurodegenerative diseases

线粒体动力学——融合、分裂、运动和线粒体自噬——在神经退行性疾病中的作用

Chen, Hsiuchen; Chan, David C