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

UFMylation of Pyruvate Dehydrogenase Regulates Mitochondrial Metabolism

丙酮酸脱氢酶的UFMylation修饰调节线粒体代谢

Nguyen, Phong T; Wu, Zheng; Kim, Dohun; Ogu, Tamaratare; Yin, Siyu; Sondhi, Varun; Cai, Feng; Tippetts, Trevor S; Jen, Annie; Shishkova, Evgenia; Cai, Ling; Dumesnil, Dennis; Cervantes, Margaret; Chen, Hongli; Mishra, Prashant; Coon, Joshua J; Hoxhaj, Gerta; Ni, Min; DeBerardinis, Ralph J

Somatic loss-of-function mutations in CIDEB reduce hepatic steatosis by increasing lipolysis and fatty acid oxidation.

CIDEB 的体细胞功能丧失突变通过增加脂肪分解和脂肪酸氧化来减少肝脂肪变性

Zeng Qiyu, Patel Satish, Wang Xun, Hsieh Meng-Hsiung, Li Zhijie, Ren Xiongzhao, Wang Jingjing, Kim Dohun, Li Shili, Gu Xinping, Mannino Greg, Maggiore Gianna, Fang Xiangyi, Li Lin, Zhu Min, Wang Mengmeng, Li Boyuan, Bellary Amaey, Lim Koini, Qi Zhetuo, Pushpa Pushpa, Mandour Mandour Omer, Saudek Vladimir, Sharma Tripti, Zhang Yu, Hoxhaj Gerta, Mishra Prashant, Gopal Purva, Campbell Peter, Hoare Matthew, Savage David B, Zhu Hao

Mitochondrial NADPH fuels mitochondrial fatty acid synthesis and lipoylation to power oxidative metabolism.

线粒体 NADPH 为线粒体脂肪酸合成和脂酰化提供能量,从而驱动氧化代谢

Kim Dohun, Kesavan Rushendhiran, Ryu Kevin, Dey Trishna, Marckx Austin, Menezes Cameron, Praharaj Prakash P, Morley Stewart, Ko Bookyung, Soflaee Mona H, Tom Harrison J, Brown Harrison, Vu Hieu S, Tso Shih-Chia, Brautigam Chad A, Lemoff Andrew, Mettlen Marcel, Mishra Prashant, Cai Feng, Allen Doug K, Hoxhaj Gerta

Metabolic inflexibility promotes mitochondrial health during liver regeneration

代谢灵活性不足有利于肝脏再生过程中线粒体的健康。

Wang, Xun; Menezes, Cameron J; Jia, Yuemeng; Xiao, Yi; Venigalla, Siva Sai Krishna; Cai, Feng; Hsieh, Meng-Hsiung; Gu, Wen; Du, Liming; Sudderth, Jessica; Kim, Dohun; Shelton, Spencer D; Llamas, Claire B; Lin, Yu-Hsuan; Zhu, Min; Merchant, Salma; Bezwada, Divya; Kelekar, Sherwin; Zacharias, Lauren G; Mathews, Thomas P; Hoxhaj, Gerta; Wynn, R Max; Tambar, Uttam K; DeBerardinis, Ralph J; Zhu, Hao; Mishra, Prashant

Publisher's Note: ZNRF2 is released from membranes by growth factors and, together with ZNRF1, regulates the Na+/K+ATPase

编者按:ZNRF2 由生长因子从细胞膜释放,并与 ZNRF1 共同调节 Na+/K+ATPase。

Hoxhaj, Gerta; Najafov, Ayaz; Toth, Rachel; Campbell, David G; Prescott, Alan R; MacKintosh, Carol

The PI3K-AKT network at the interface of oncogenic signalling and cancer metabolism

PI3K-AKT网络位于致癌信号传导和癌症代谢的交汇点

Hoxhaj, Gerta; Manning, Brendan D

ZNRF2 is released from membranes by growth factors and, together with ZNRF1, regulates the Na+/K+ATPase.

ZNRF2 由生长因子从膜上释放,并与 ZNRF1 一起调节 Na+/K+ATPase

Hoxhaj Gerta, Najafov Ayaz, Toth Rachel, Campbell David G, Prescott Alan R, MacKintosh Carol

MENA is a transcriptional target of the Wnt/beta-catenin pathway

MENA是Wnt/β-catenin信号通路的一个转录靶点。

Najafov, Ayaz; Seker, Tuncay; Even, Ipek; Hoxhaj, Gerta; Selvi, Osman; Ozel, Duygu Esen; Koman, Ahmet; Birgül-İyison, Necla