细胞S-腺苷甲硫氨酸成像图,随着每个时间点蛋氨酸(右下)的增加,荧光强度也增高
省部重点实验室
第1楼2012/03/09
doi:10.1126/science.1218298
PMC:
PMID:
Fluorescence Imaging of Cellular Metabolites with RNA
J. S. Paige, T. Nguyen-Duc, W. Song, S. R. Jaffrey
Genetically encoded sensors are powerful tools for imaging intracellular metabolites and signaling molecules. However, developing sensors is challenging because they require proteins that undergo conformational changes upon binding the desired target molecule. We describe an approach for generating fluorescent sensors based on Spinach, an RNA sequence that binds and activates the fluorescence of a small-molecule fluorophore. We show that these sensors can detect a variety of different small molecules in vitro and in living cells. These RNAs constitute a versatile approach for fluorescence imaging of small molecules and have the potential to detect essentially any cellular biomolecule.