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通过使用可替换的线性聚丙烯酰胺溶液进行毛细管电泳,在不到一小时的时间内对1000个碱基进行常规DNA测序。

Routine DNA sequencing of 1000 bases in less than one hour by capillary electrophoresis with replaceable linear polyacrylamide solutions.

作者信息

Salas-Solano O, Carrilho E, Kotler L, Miller A W, Goetzinger W, Sosic Z, Karger B L

机构信息

Barnett Institute, Northeastern University, Boston, Massachusetts 02115, USA.

出版信息

Anal Chem. 1998 Oct 1;70(19):3996-4003. doi: 10.1021/ac980457f.

Abstract

Long, accurate reads are an important factor for high-throughput de novo DNA sequencing. In previous work from this laboratory, a separation matrix of high-weight-average molecular mass (HMM) linear polyacrylamide (LPA) at a concentration of 2% (w/w) was used to separate 1000 bases of DNA sequence in 80 min with an accuracy close to 97% (Carrilho, E.; et al. Anal. Chem. 1996, 68, 3305-3313). In the present work, significantly improved speed and sequencing accuracy have been achieved by further optimization of factors affecting electrophoretic separation and data processing. A replaceable matrix containing a mixture of 2.0% (w/w) HMM (9 MDa) and 0.5% (w/w) low-weight-average molecular mass (50 kDa) LPA was employed to enhance the separation of DNA sequencing fragments in CE. Experimental conditions, such as electric field strength and column temperature, as well as internal diameter of the capillary column, have been optimized for this mixed separation matrix. Under these conditions, in combination with energy-transfer (BigDye) dye-labeled primers for high signal-to-noise ratio and a newly developed expert system for base calling, the electrophoretic separation of 1000 DNA sequencing fragments of both standard (M13mp18) and cloned single-stranded templates from human chromosome 17 could be routinely achieved in less than 55 min, with a base-calling accuracy between 98 and 99%. Identical read length, accuracy, and migration time were achieved in more than 300 consecutive runs in a single column.

摘要

长的、准确的 reads 是高通量从头 DNA 测序的一个重要因素。在本实验室之前的工作中,使用浓度为 2%(w/w)的高重均分子量(HMM)线性聚丙烯酰胺(LPA)分离基质,在 80 分钟内分离出 1000 个碱基的 DNA 序列,准确率接近 97%(卡里略,E.;等人,《分析化学》,1996 年,68 卷,3305 - 3313 页)。在本工作中,通过进一步优化影响电泳分离和数据处理的因素,实现了显著提高的速度和测序准确性。采用一种可替换的基质,其包含 2.0%(w/w)HMM(9 MDa)和 0.5%(w/w)低重均分子量(50 kDa)LPA 的混合物,以增强 CE 中 DNA 测序片段的分离。针对这种混合分离基质,对电场强度、柱温以及毛细管柱内径等实验条件进行了优化。在这些条件下,结合用于高信噪比的能量转移(BigDye)染料标记引物和新开发的碱基识别专家系统,标准(M13mp18)和来自人类 17 号染色体的克隆单链模板的 1000 个 DNA 测序片段的电泳分离通常可在不到 55 分钟内完成,碱基识别准确率在 98%至 99%之间。在同一根柱子上进行的 300 多次连续运行中,实现了相同的读取长度、准确率和迁移时间。

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