化学
荧光团
转移RNA
核糖核酸
荧光
共价键
原位
生物化学
生物物理学
胞浆
动力学
核酸结构
化学改性
内生
线粒体
细胞
荧光显微镜
寡核苷酸
DNA
翻译(生物学)
活体细胞成像
碱基对
分辨率(逻辑)
细胞生物学
同位素标记
作者
Andrew H. Ryu,Neal K. Devaraj
摘要
analogues into q-cognate tRNAs only when they lack queuine, a unique hypermodified base that influences translation, stress responses, and mammalian physiology. Because queuine-modified tRNAs are not substrates for transglycosylation, fluorophore incorporation directly reports the hypomodification status. Queuine-hypomodified tRNAs are selectively visualized with subcellular resolution in fixed cells. Using this approach, we track queuine incorporation and loss kinetics across cell lines, analyze genetic factors that control modification, and resolve differences between cytosolic and mitochondrial tRNA populations. Beyond queuine, this work demonstrates a strategy for converting the endogenous RNA modification state into a covalent fluorescent readout, providing a chemical framework for spatial analysis of RNA modifications in intact cells.
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