化学
核糖核酸
寡核苷酸
计算生物学
转移RNA
分子生物学
抄写(语言学)
核糖体RNA
转录后修饰
细胞生物学
规范化(社会学)
核酸
细胞
核酸结构
逆转录酶
生物化学
结扎
信使核糖核酸
核糖体
翻译(生物学)
核糖开关
基因表达
核酸酶保护试验
复式(建筑)
体外
色谱法
邻近连接试验
分辨率(逻辑)
校准曲线
RNA提取
作者
Zhiying Wang,Xiumin Liu,Xinyue Guo,Xiaochen Xue,Xiang Zhou,Yafen Wang
标识
DOI:10.1021/acs.analchem.6c01071
摘要
RNA N 4 -acetylcytidine (ac 4 C) and 5-formylcytidine (f 5 C) regulate translation and RNA fate, yet practical locus-specific assays are limited. We report CATAL, a chemical-assisted ligation-qPCR method for single-nucleotide- resolution analysis of ac 4 C and f 5 C. Selective conversion generates a predictable C-to-T outcome at a selected site, which is converted into a ligation-efficiency difference by template-directed probe ligation and quantified by qPCR. CATAL is sequencing-free, uses standard oligonucleotides and widely available qPCR instruments, and bypasses reverse transcription for the primary readout, enabling direct ligation-based detection with low RNA input and tolerance to complex RNA backgrounds. Synthetic RNA mixtures produced calibration curves relating signal to the input ac 4 C/f 5 C fraction. We validated CATAL at reported ac 4 C and f 5 C sites in rRNA and tRNA from multiple human cell lines. Housekeeping-transcript normalization reduced variability and enabled analysis of NAT10 and ALKBH1 perturbations. Overall, CATAL provides a sequencing-free and ligation-based targeted workflow for site-resolved detection and quantification of RNA modifications that supports mechanistic studies of RNA modification regulation and focused validation in biological samples.
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