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通过靶RNA引发的滚环扩增对单细胞中的mRNA进行高特异性成像。

Highly specific imaging of mRNA in single cells by target RNA-initiated rolling circle amplification.

作者信息

Deng Ruijie, Zhang Kaixiang, Sun Yupeng, Ren Xiaojun, Li Jinghong

机构信息

Department of Chemistry , Key Laboratory of Bioorganic Phosphorus Chemistry & Chemical Biology , Beijing Key Laboratory for Microanalytical Methods and Instrumentation , Tsinghua University , Beijing 100084 , China . Email:

出版信息

Chem Sci. 2017 May 1;8(5):3668-3675. doi: 10.1039/c7sc00292k. Epub 2017 Mar 7.

Abstract

Detection of single-cell gene expression with high spatial and sequence resolution is a key challenge in single cell biology. Herein, we propose a robust method for the direct detection of mRNA, termed target RNA-initiated rolling circle amplification, which enables imaging of mRNA with single-nucleotide and near-single-molecule resolution in single cells. By utilizing a Splint R ligase capable of efficiently catalyzing the ligation of a padlock probe by the target RNA, the method can enable the efficient detection of mRNA without reverse transcription (detection efficiency over 20%). Meanwhile, attributed to the ligation-based recognition process, the method confers specificity sufficient to genotype mRNAs with one-nucleotide variations. The method has enabled the spatial mapping and correlation analysis of gene expression in single cells which could help us to elucidate the gene functions and regulatory mechanisms. This method offers an mRNA profiling ability with high spatial resolution and sequence specificity, thus is expected to be a single-cell analysis platform for not only investigating gene expression, but also potentially for analyzing single-nucleotide variants or mRNA alternative splicing at single-cell level.

摘要

在单细胞生物学中,以高空间和序列分辨率检测单细胞基因表达是一项关键挑战。在此,我们提出了一种用于直接检测mRNA的稳健方法,称为靶RNA引发的滚环扩增,它能够在单细胞中以单核苷酸和近单分子分辨率对mRNA进行成像。通过利用一种能够有效催化靶RNA连接锁式探针的夹板R连接酶,该方法能够在不进行逆转录的情况下高效检测mRNA(检测效率超过20%)。同时,由于基于连接的识别过程,该方法赋予了足够的特异性以对具有单核苷酸变异的mRNA进行基因分型。该方法实现了单细胞中基因表达的空间映射和相关性分析,这有助于我们阐明基因功能和调控机制。此方法提供了具有高空间分辨率和序列特异性的mRNA分析能力,因此有望成为一个单细胞分析平台,不仅用于研究基因表达,还可能用于在单细胞水平分析单核苷酸变异或mRNA可变剪接。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dec5/5437493/e58d596c81c3/c7sc00292k-s1.jpg

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