Yan Shuanghong, Li Xintong, Zhang Panke, Wang Yuqin, Chen Hong-Yuan, Huang Shuo, Yu Hanyang
State Key Laboratory of Analytical Chemistry for Life Sciences , Nanjing University , 210023 , Nanjing , China.
School of Chemistry and Chemical Engineering , Nanjing University , 210023 , Nanjing , China .
Chem Sci. 2019 Jan 23;10(10):3110-3117. doi: 10.1039/c8sc05228j. eCollection 2019 Mar 14.
2'-deoxy-2'-fluoroarabinonucleic acid (FANA), which is one type of xeno-nucleic acid (XNA), has been intensively studied in molecular medicine and synthetic biology because of its superior gene-silencing and catalytic activities. Although urgently required, FANA cannot be directly sequenced by any existing platform. Nanopore sequencing, which identifies a single molecule analyte directly from its physical and chemical properties, shows promise for direct XNA sequencing. As a proof of concept, different FANA homopolymers show well-distinguished pore blockage signals in a Mycobacterium smegmatis porin A (MspA) nanopore. By ligating FANA with a DNA drive-strand, direct FANA sequencing has been demonstrated using phi29 DNA polymerase by Nanopore-Induced Phase Shift Sequencing (NIPSS). When bound with an FANA template, the phi29 DNA polymerase shows unexpected reverse transcriptase activity when monitored in a single molecule assay. Following further investigations into the ensemble, phi29 DNA polymerase is shown to be a previously unknown reverse transcriptase for FANA that operates at room temperature, and is potentially ideal for nanopore sequencing. These results represent the first direct sequencing of a sugar-modified XNA and suggest that phi29 DNA polymerase could act as a promising enzyme for sustained sequencing of a wide variety of XNAs.
2'-脱氧-2'-氟阿拉伯核酸(FANA)是异种核酸(XNA)的一种,因其卓越的基因沉默和催化活性,在分子医学和合成生物学领域得到了深入研究。尽管迫切需要,但现有的任何平台都无法直接对FANA进行测序。纳米孔测序可直接根据单个分子分析物的物理和化学性质进行识别,有望实现对XNA的直接测序。作为概念验证,不同的FANA均聚物在耻垢分枝杆菌孔蛋白A(MspA)纳米孔中显示出明显不同的孔堵塞信号。通过将FANA与DNA驱动链连接,利用纳米孔诱导相移测序(NIPSS)技术,使用phi29 DNA聚合酶实现了对FANA的直接测序。当与FANA模板结合时,在单分子检测中监测发现phi29 DNA聚合酶表现出意想不到的逆转录酶活性。经过进一步的整体研究,发现phi29 DNA聚合酶是一种此前未知的、可在室温下作用于FANA的逆转录酶,可能是纳米孔测序的理想选择。这些结果代表了对糖修饰XNA的首次直接测序,并表明phi29 DNA聚合酶可能是用于多种XNA持续测序的一种有前景的酶。