费斯特共振能量转移
化学
生物正交化学
聚糖
核糖核酸
原位
计算生物学
可视化
共域化
共价键
生物物理学
结构母题
纳米技术
生物系统
寡核苷酸
适体
糖组学
生物化学
序列(生物学)
CTD公司
分子生物物理学
分子探针
点击化学
作者
Ben Niu,Shuang Xie,Ruijia Deng,Jing Sheng,Meilin Gong,Yu Tang,Jie Luo,Yan He,Zuowei Xie,Yu Zhang,Ming Chen,Kai Chang
标识
DOI:10.1021/acs.analchem.5c06745
摘要
Visualization of site specific glycoforms of RNA on live cell surfaces remains technically challenging due to glycoform heterogeneity and the covalently linked structural motifs of glycoRNA. Here, a spatial coding strategy termed SpaceFRET (Spatial coded Förster resonance energy transfer) is developed for in situ visualization of RNA-specific glycoforms. SpaceFRET enables the identification of covalent conjugation of glycan and RNA by integrating chemoenzymatic glycan labeling (CeGL) with proximity induced dual encoding system. Glycoforms of glycoRNAs are incorporate bioorthogonal chemical groups via CeGL, which are further encoded with FRET donor probes by click chemistry. Specific RNA sequences are encoded by hairpin-shaped FRET acceptor probes through sequence specificity. The information on glycoRNAs is subsequently decoded by the dynamics of strand displacement reactions. SpaceFRET has been successfully employed to visualize the sia-glycoRNA, Gal/GalNAc-glycoRNA and LacNAc-glycoRNA. Furthermore, SpaceFRET elucidates the presence of glycoRNAs on small extracellular vesicles and delineates the spatial distributions of glycoRNAs on the cell surface, including their colocalization with lipid rafts. The SpaceFRET provides a versatile platform for profiling RNA-specific glycoforms, holding great promise for validating the mechanism underlying their function.
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