UFL1, a UFMylation E3 ligase, plays a crucial role in multiple cellular stress responses
文献类型: 外文期刊
第一作者: Jiang, Qiang
作者: Jiang, Qiang;Xiang, Minghui;Hua, Jiamin;Zhou, Tianci;Cai, Yafei;Jiang, Qiang;Huang, Jinming;Wang, Yongsheng;Chen, Fanghui;Lv, Xiaoyang
作者机构:
关键词: UFL1; Ufmylation modification; ER stress; genotoxic stress; oncogenic stress; inflammation
期刊名称:FRONTIERS IN ENDOCRINOLOGY ( 影响因子:5.2; 五年影响因子:5.9 )
ISSN: 1664-2392
年卷期: 2023 年 14 卷
页码:
收录情况: SCI
摘要: The UFM1 conjugation system(UFMylation)is a novel type of ubiquitin-like system that plays an indispensable role in maintaining cell homeostasis under various cellular stress. Similar to ubiquitination, UFMylation consists of a three-step enzymatic reaction with E1-like enzymes ubiquitin-like modifier activating enzyme5 (UBA5), E2-like enzymes ubiquitin-fold modifier-conjugating enzyme 1(UFC1), and E3-like ligase UFM1-specific ligase 1 (UFL1). As the only identified E3 ligase, UFL1 is responsible for specific binding and modification of the substrates to mediate numerous hormone signaling pathways and endocrine regulation under different physiological or pathological stress, such as ER stress, genotoxic stress, oncogenic stress, and inflammation. Further elucidation of the UFL1 working mechanism in multiple cellular stress responses is essential for revealing the disease pathogenesis and providing novel potential therapeutic targets. In this short review, we summarize the recent advances in novel UFL1 functions and shed light on the potential challenges ahead, thus hopefully providing a better understanding of UFMylation-mediated cellular stress.
分类号:
- 相关文献
作者其他论文 更多>>
-
m6A Methylation Mediates the Function of the circRNA-08436/miR-195/ELOVL6 Axis in Regards to Lipid Metabolism in Dairy Goat Mammary Glands
作者:Wang, Yu;Zhang, Ning;Chen, Zhi;Wang, Yu;Zhang, Ning;Chen, Zhi;Wang, Yu;Wu, Yanni;Yang, Sitian;Gao, Rui;Lv, Xiaoyang;Yang, Zhangping;Chen, Zhi;Lv, Xiaoyang;Yang, Zhangping;Chen, Zhi;Lv, Xiaoyang;Chen, Zhi;Jiao, Peixin;Loor, Juan J.;Loor, Juan J.
关键词:circRNA-08436; miR-195; ELOVL6; M(6)A methylation
-
CFAP58 is involved in the sperm head shaping and flagellogenesis of cattle and mice
作者:Wei, Xiaochao;Wang, Xiuge;Yang, Chunhong;Gao, Yaping;Zhang, Yaran;Xiao, Yao;Ju, Zhihua;Jiang, Qiang;Wang, Jinpeng;Liu, Wenhao;Li, Yanqin;Gao, Yundong;Huang, Jinming;Wei, Xiaochao;Wang, Xiuge;Yang, Chunhong;Gao, Yaping;Zhang, Yaran;Xiao, Yao;Ju, Zhihua;Jiang, Qiang;Wang, Jinpeng;Liu, Wenhao;Li, Yanqin;Gao, Yundong;Huang, Jinming;Gao, Yundong;Huang, Jinming
关键词:CFAP58; Genetic variation; Spermatogenesis; Manchette; IMT/IFT
-
The Effects of Different Concentrations of Hydrogen-Rich Water on the Growth Performance, Digestive Ability, Antioxidant Capacity, Glucose Metabolism Pathway, mTOR Signaling Pathway, and Gut Microbiota of Largemouth Bass (Micropterus salmoides)
作者:Yuan, Yin;Wang, Yongsheng;Li, Huixiang;Chen, Songwei;Lin, Yongchun;Peng, Jiangyuan;Hu, Junru
关键词:hydrogen rich water; growth performance; glucose metabolism; mTOR pathways; gut microbiota; largemouth bass
-
Characterizing the hindgut microbiome in healthy and ketotic cows
作者:Ju, Zhihua;Li, Rongling;Liu, Wenhao;Jiang, Qiang;Wang, Jinpeng;Zhang, Yaran;Wang, Xiuge;Xiao, Yao;Yang, Chunhong;Wei, Xiaochao;Gao, Yaping;Huang, Jinming;Ju, Zhihua;Li, Rongling;Liu, Wenhao;Wang, Jinpeng;Zhang, Yaran;Wang, Xiuge;Xiao, Yao;Huang, Jinming;Ju, Zhihua;Huang, Jinming
关键词:Cow ketosis; beta-hydroxybutyrate; 16S sequencing; hindgut fecal microbiota
-
miR-329b-5p Affects Sheep Intestinal Epithelial Cells against Escherichia coli F17 Infection
作者:Xu, Yeling;Chen, Weihao;Sun, Wei;Yang, Huiguo;Song, Zhenghai;Wang, Yeqing;Su, Rui;Mwacharo, Joram M.;Lv, Xiaoyang;Sun, Wei;Lv, Xiaoyang;Sun, Wei
关键词:Escherichia coli F17; micro RNA; sheep diarrhea; intestinal epithelial cells
-
Molecular characterization of Cryptosporidium spp. in Bactrian camels (Camelus bactrianus) from Yili Kazak Autonomous Prefecture of Xinjiang, China
作者:Mi, Rongsheng;Yan, Genqiang;Mi, Rongsheng;Gong, Haiyan;Huang, Yan;Zhang, Yan;Chen, Zhaoguo;Silayi, Amanguli;Wang, Yongsheng;Xia, Chenyang;Tang, Wenqiang
关键词:Cryptosporidium spp.; molecular epidemiology; Bactrian camel; Yili Prefecture; Xinjiang
-
Evolutionary adaptations generally reverse phenotypic plasticity to restore ancestral phenotypes during new environment adaptation in cattle
作者:Jiang, Qiang;Cai, Yafei;Jiang, Qiang;Huang, Jinming;Zhu, Li;Zeng, Hao;Basang, Zhuzha;Suolang, Quji
关键词:cattle; environment adaptation; gene expression; phenotypic plasticity