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寡核苷酸中单碱基变异的直接读出。

Direct Readout of Single Nucleobase Variations in an Oligonucleotide.

机构信息

Key Laboratory for Advanced Materials & School of Chemistry and Molecular Engineering, East China University of Science and Technology, Shanghai, 200237, P. R. China.

出版信息

Small. 2017 Nov;13(44). doi: 10.1002/smll.201702011. Epub 2017 Oct 11.

Abstract

Direct, low-cost, label-free, and enzyme-free identification of single nucleobase is a great challenge for genomic studies. Here, this study reports that wild-type aerolysin can directly identify the difference of four types of single nucleobase (adenine, thymine, cytosine, and guanine) in a free DNA oligomer while avoiding the operations of additional DNA immobilization, adapter incorporation, and the use of the processing enzyme. The nanoconfined space of aerolysin enables DNA molecules to be limited in the narrow pore. Moreover, aerolysin exhibits an unexpected capability of detecting DNA oligomers at the femtomolar concentration. In the future, by virtue of the high sensitivity of aerolysin and its high capture ability for DNA oligomers, aerolysin will play an important role in the studies of single nucleobase variations and open up new avenues for a broad range of nucleic-acid-based sensing and disease diagnosis.

摘要

直接、低成本、无需标记且无需酶的单核苷酸识别是基因组研究的一大挑战。在本研究中,报告称野生型 Aerolysin 可以在游离 DNA 寡聚体中直接识别四种类型的单核苷酸(腺嘌呤、胸腺嘧啶、胞嘧啶和鸟嘌呤)的差异,同时避免了额外的 DNA 固定、接头掺入和使用加工酶的操作。Aerolysin 的纳米限域空间使 DNA 分子局限在狭窄的孔中。此外,Aerolysin 出人意料地表现出检测飞摩尔浓度 DNA 寡聚体的能力。将来,凭借 Aerolysin 的高灵敏度及其对 DNA 寡聚体的高捕获能力,Aerolysin 将在单核苷酸变异研究中发挥重要作用,并为广泛的基于核酸的传感和疾病诊断开辟新途径。

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