Vitzthum F, Geiger G, Bisswanger H, Brunner H, Bernhagen J
Laboratory of Biochemistry, Chair for Interfacial Engineering, University of Stuttgart and Fraunhofer IGB, Nobelstrasse 12, Stuttgart, D-70569, Germany.
Anal Biochem. 1999 Dec 1;276(1):59-64. doi: 10.1006/abio.1999.4298.
Various assays are available for quantification of DNA in solution, but none has been described that is both sensitive and specific for double-stranded (ds) DNA and features practical properties such as low dye and equipment costs, speed, and highly parallel microplate formats. Here we show that quantitative and sensitive measurement of ds DNA in solution is achieved using a 96-well microplate SYBR Green I assay and a standard uv transillumination-based gel-imaging system for detection. Specific detection of ds DNA was obtained over a broad concentration range of 0.5-500 ng using a single low dye concentration of up to 1/6250. Measured SYBR Green I fluorescence was not significantly affected by pH variation (4-10), assay volume (50-250 microliter l), and time (4-15 min), and measurements were appreciably compatile with commonly encountered concentrations of contaminating salts, organics, detergents, and other substances. ds DNA yielded up to 13-fold higher fluorescence compared to single-stranded DNA or RNA, but this ratio was dependent somewhat on GC content and fragment size. Of note, linear ds DNA fluoresced significantly stronger than supercoiled plasmid DNA. Our method should be broadly applicable for sensitive, rapid, and inexpensive ds DNA quantification in the average molecular biology laboratory.
有多种方法可用于定量溶液中的DNA,但尚未有既对双链(ds)DNA敏感又特异,且具有低染料和设备成本、速度快以及高度平行的微孔板形式等实用特性的方法被描述。在此我们表明,使用96孔微孔板SYBR Green I检测法和基于标准紫外透射照明的凝胶成像系统进行检测,可实现对溶液中ds DNA的定量和灵敏测量。使用单一低至1/6250的染料浓度,在0.5 - 500 ng的宽浓度范围内可获得对ds DNA的特异性检测。所测得的SYBR Green I荧光不受pH变化(4 - 10)、检测体积(50 - 250微升)和时间(4 - 15分钟)的显著影响,并且测量结果与常见浓度的污染盐、有机物、洗涤剂和其他物质明显兼容。与单链DNA或RNA相比,ds DNA产生的荧光高达13倍,但该比例在一定程度上取决于GC含量和片段大小。值得注意的是,线性ds DNA的荧光明显强于超螺旋质粒DNA。我们的方法应广泛适用于普通分子生物学实验室中灵敏、快速且廉价的ds DNA定量。