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

p53-induced RNA-binding protein ZMAT3 inhibits transcription of a hexokinase to suppress mitochondrial respiration in human cancer cells.

p53 诱导的 RNA 结合蛋白 ZMAT3 抑制己糖激酶的转录,从而抑制人类癌细胞的线粒体呼吸作用。

Kumar Ravi, Couly Simon, Muys Bruna R, Li Xiao Ling, Grammatikakis Ioannis, Singh Ragini, Guest Mary, Wen Xinyu, Tang Wei, Ambs Stefan, Jenkins Lisa M, Pehrsson Erica C, Chari Raj, Su Tsung-Ping, Lal Ashish

Positive modulation of sigma-1 receptor: a new weapon to mitigate disease progression in amyotrophic lateral sclerosis.

σ-1 受体的正向调节:缓解肌萎缩侧索硬化症疾病进展的新武器。

Le Friec Julien, Mourier Hugo, Couly Simon, Cubedo Nicolas, Dubois Kevin, Meunier Johann, Delprat Benjamin, De Zordo-Banliat Arnaud, Ayad Tahar, Virieux David, Su Tsung-Ping, Lasbleiz Christelle, Maurice Tangui, Liévens Jean-Charles

BENZOMORPHAN AND NON-BENZOMORPHAN AGONISTS DIFFERENTIALLY ALTER SIGMA-1 RECEPTOR QUATERNARY STRUCTURE, AS DOES TYPES OF CELLULAR STRESS

苯并吗啡激动剂和非苯并吗啡激动剂对σ-1受体四级结构的改变方式不同,不同类型的细胞应激也会产生类似的影响。

Qu, Chunrong; Xiao, Yuling; Zhou, Hui; Ding, Bingbing; Li, Anguo; Lin, Jiacheng; Zeng, Xiaodong; Chen, Hao; Qian, Kun; Zhang, Xiao; Fang, Wei; Wu, Junzhu; Deng, Zixin; Cheng, Zhen; Hong, Xuechuan; Couly, *Simon; Yasui, Yuko; Foncham, Semnyonga; Grammatikakis, Ioannis; Lal, Ashish; Shi, Lei; Su, Tsung- Ping

Sigma-1 Receptor Promotes Glycolysis in Neuronal Systems by Suppressing GRIM19.

Sigma-1 受体通过抑制 GRIM19 促进神经元系统中的糖酵解

Couly Simon, Yasui Yuko, Grammatikakis Ioannis, Kimura Yuriko, Hinkle Josh, Gomez Juan, Wu Hsiang-En, Paritosh Ghosh, Lal Ashish, Michaelides Michael, Harvey Brandon, Su Tsung-Ping

p53-induced RNA-binding protein ZMAT3 inhibits transcription of a hexokinase to suppress mitochondrial respiration.

p53 诱导的 RNA 结合蛋白 ZMAT3 抑制己糖激酶的转录,从而抑制线粒体呼吸

Kumar Ravi, Couly Simon, Muys Bruna R, Li Xiao Ling, Grammatikakis Ioannis, Singh Ragini, Guest Mary, Wen Xinyu, Tang Wei, Ambs Stefan, Jenkins Lisa M, Pehrsson Erica C, Chari Raj, Su Tsung-Ping, Lal Ashish

Defective tubulin detyrosination causes structural brain abnormalities with cognitive deficiency in humans and mice

微管蛋白去酪氨酸化缺陷会导致人类和小鼠出现脑结构异常和认知障碍。

Pagnamenta, Alistair T; Heemeryck, Pierre; Martin, Hilary C; Bosc, Christophe; Peris, Leticia; Uszynski, Ivy; Gory-Fauré, Sylvie; Couly, Simon; Deshpande, Charu; Siddiqui, Ata; Elmonairy, Alaa A; Jayawant, Sandeep; Murthy, Sarada; Walker, Ian; Loong, Lucy; Bauer, Peter; Vossier, Frédérique; Denarier, Eric; Maurice, Tangui; Barbier, Emmanuel L; Deloulme, Jean-Christophe; Taylor, Jenny C; Blair, Edward M; Andrieux, Annie; Moutin, Marie-Jo