体内
生物化学
分析物
脂质代谢
生物
酶
荧光
新陈代谢
生物传感器
细胞生物学
酰基辅酶A
药物代谢
化学
色谱法
遗传学
物理
量子力学
作者
Weibo Wang,Pengcheng Wang,Lixin Zhu,Bingjie Liu,Qingpeng Wei,Yongkang Hou,Xi Li,Yufei Hu,Wenzhe Li,Yuan Wang,Changtao Jiang,Guang‐Fu Yang,Jing Wang
标识
DOI:10.1016/j.bios.2023.115935
摘要
Long-chain fatty acyl-CoAs (LCACoAs) are intermediates in lipid metabolism that exert a wide range of cellular functions. However, our knowledge about the subcellular distribution and regulatory impacts of LCACoAs is limited by a lack of methods for detecting LCACoAs in living cells and tissues. Here, we report our development of LACSerHR, a genetically encoded fluorescent biosensor that enables precise measurement of subtle fluctuations in the levels of endogenous LCACoAs in vivo. LACSerHR significantly improve the fluorescent brightness and analyte affinity, in vitro and in vivo testing showcased LACSerHR's large dynamic range. We demonstrate LACSerHR's capacity for real-time evaluation of LCACoA levels in specific subcellular compartments, for example in response to disruption of ACSL enzyme function in HEK293T cells. Moreover, we show the application of LACSerHR for sensitive measurement of elevated LCACoA levels in the livers of mouse models for two common metabolic diseases (NAFLD and type 2 diabetes). Thus, our LACSerHR sensor is a powerful, broadly applicable tool for studying LCACoAs metabolism and disease.
科研通智能强力驱动
Strongly Powered by AbleSci AI