控制(管理)
亚细胞定位
细胞生物学
化学
计算机科学
计算生物学
生物
人工智能
细胞质
作者
Qunxiang Ong,Rachel Esther Lim,C. K. LAM W. S. POON K. Y. C. GOH,Yilie Liao,Sher En Chan,Crystal Lim,Valerie Kam,Jerome Yap,Tiffany Tseng,Reina Desrouleaux,Loo Chien Wang,Siok Ghee Ler,Siew Lan Lim,S Robinson Kim,Radoslaw M. Sobota,Anton M. Bennett,Weiping Han,Xiaoyong Yang
标识
DOI:10.1101/2024.05.12.593740
摘要
Abstract The posttranslational modification of intracellular proteins through O-linked β-N-acetylglucosamine (O-GlcNAc) is a conserved regulatory mechanism in multicellular organisms. Catalyzed by O-GlcNAc transferase (OGT), this dynamic modification plays an essential role in signal transduction, gene expression, organelle function, and systemic physiology. Here we present Opto-OGT, an optogenetic probe that allows for precise spatiotemporal control of OGT activity through light stimulation. By fusing a photosensitive cryptochrome protein to OGT, Opto-OGT can be robustly and reversibly activated with high temporal resolution by blue light and exhibits minimal background activity without illumination. Transient activation of Opto-OGT results in mTORC activation and AMPK suppression which recapitulate nutrient-sensing signaling. Furthermore, Opto-OGT can be customized to be localized at specific subcellular sites. By targeting OGT to the plasma membrane, we demonstrate downregulation of site-specific AKT phosphorylation and signaling outputs in response to insulin stimulation. Thus, Opto-OGT is a powerful tool to define the role of O-GlcNAcylation in cell signaling and physiology.
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