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亚微米通道中的单分子DNA测序:现状与未来展望。

Single molecule DNA sequencing in submicrometer channels: state of the art and future prospects.

作者信息

Sauer M, Angerer B, Ankenbauer W, Földes-Papp Z, Göbel F, Han K T, Rigler R, Schulz A, Wolfrum J, Zander C

机构信息

Physikalisch-Chemisches Institut, Universität Heidelberg, Im Neuenheimer Feld 253, 69120 Heidelberg, Germany.

出版信息

J Biotechnol. 2001 Apr 13;86(3):181-201. doi: 10.1016/s0168-1656(00)00413-2.

Abstract

We demonstrate a new method for single molecule DNA sequencing which is based upon detection and identification of single fluorescently labeled mononucleotide molecules degraded from DNA-strands in a cone shaped microcapillary with an inner diameter of 0.5 microm. The DNA was attached at an optical fiber via streptavidin/biotin binding and placed approximately 50 microm in front of the detection area inside of the microcapillary. The 5'-biotinylated 218-mer model DNA sequence used in the experiments contained 6 fluorescently labeled cytosine and uridine residues, respectively, at well defined positions. The negatively charged mononucleotide molecules were released by addition of exonuclease I and moved towards the detection area by electrokinetic forces. Adsorption of mononucleotide molecules onto the capillary walls as well as the electroosmotic (EOF) flow was prevented by the use of a 3% polyvinyl pyrrolidone (PVP) matrix containing 0.1% Tween 20. For efficient excitation of the labeled mononucleotide molecules a short-pulse diode laser emitting at 638 nm with a repetition rate of 57 MHz was applied. We report on experiments where single-stranded model DNA molecules each containing 6 fluorescently labeled dCTP and dUTP residues were attached at the tip of a fiber, transferred into the microcapillary and degraded by addition of exonuclease I solution. In one experiment, the exonucleolytic cleavage of 5-6 model DNA molecules was observed. 86 photon bursts were detected (43 Cy5-dCMP and 43 MR121-dUMP) during 400 s and identified due to the characteristic fluorescence decay time of the labels of 1.43+/-0.19 ns (Cy5-dCMP), and 2.35+/-0.29 ns (MR121-dUMP). The cleavage rate of exonuclease I on single-stranded labeled DNA molecules was determined to 3-24 Hz under the applied experimental conditions. In addition, the observed burst count rate (signals/s) indicates nonprocessive behavior of exonuclease I on single-stranded labeled DNA.

摘要

我们展示了一种用于单分子DNA测序的新方法,该方法基于对从内径为0.5微米的锥形微毛细管中的DNA链降解而来的单个荧光标记单核苷酸分子的检测和识别。DNA通过链霉亲和素/生物素结合附着在光纤上,并放置在微毛细管内检测区域前方约50微米处。实验中使用的5'-生物素化的218-mer模型DNA序列在明确的位置分别包含6个荧光标记的胞嘧啶和尿苷残基。通过添加核酸外切酶I释放带负电荷的单核苷酸分子,并通过电动力将其移向检测区域。通过使用含有0.1%吐温20的3%聚乙烯吡咯烷酮(PVP)基质,可防止单核苷酸分子吸附到毛细管壁以及电渗(EOF)流上。为了有效激发标记的单核苷酸分子,应用了发射波长为638 nm、重复频率为57 MHz的短脉冲二极管激光器。我们报告了实验情况,其中每个包含6个荧光标记的dCTP和dUTP残基的单链模型DNA分子附着在光纤尖端上,转移到微毛细管中,并通过添加核酸外切酶I溶液进行降解。在一个实验中,观察到5 - 6个模型DNA分子的外切核酸酶裂解。在400秒内检测到86个光子爆发(43个Cy5-dCMP和43个MR121-dUMP),并根据标记物的特征荧光衰减时间1.43±0.19 ns(Cy5-dCMP)和2.35±0.29 ns(MR121-dUMP)进行了识别。在所应用的实验条件下,核酸外切酶I对单链标记DNA分子的裂解速率确定为3 - 24 Hz。此外,观察到的爆发计数率(信号/秒)表明核酸外切酶I对单链标记DNA的非连续行为。

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