假尿苷
纳米孔
纳米孔测序
支原体
核糖核酸
核苷
计算生物学
生物化学
化学
生物
核酸
转移RNA
纳米技术
基因
DNA测序
材料科学
肺结核
结核分枝杆菌
病理
医学
作者
Yuqin Wang,Shanyu Zhang,Wendong Jia,Pingping Fan,Liying Wang,Xinyue Li,Jialu Chen,Zhenyuan Cao,Xiaoyu Du,Yao Liu,Kefan Wang,Chengzhen Hu,Jinyue Zhang,Jun Hu,Panke Zhang,Hong‐Yuan Chen,Shuo Huang
标识
DOI:10.1038/s41565-022-01169-2
摘要
RNA modifications play critical roles in the regulation of various biological processes and are associated with many human diseases. Direct identification of RNA modifications by sequencing remains challenging, however. Nanopore sequencing is promising, but the current strategy is complicated by sequence decoding. Sequential nanopore identification of enzymatically cleaved nucleoside monophosphates may simultaneously provide accurate sequence and modification information. Here we show a phenylboronic acid-modified hetero-octameric Mycobacterium smegmatis porin A nanopore, with which direct distinguishing between monophosphates of canonical nucleosides, 5-methylcytidine, N6-methyladenosine, N7-methylguanosine, N1-methyladenosine, inosine, pseudouridine and dihydrouridine was achieved. A custom machine learning algorithm, which reports an accuracy of 0.996, was also applied to the quantitative analysis of modifications in microRNA and natural transfer RNA. It is generally suitable for sensing of a variety of other nucleoside or nucleotide derivatives and may bring new insights to epigenetic RNA sequencing. A phenylboronic acid-modified hetero-octameric Mycobacterium smegmatis porin A nanopore can directly distinguish 11 types of nucleoside monophosphates with a 0.996 accuracy.
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