Tu O, Knott T, Marsh M, Bechtol K, Harris D, Barker D, Bashkin J
Molecular Dynamics, Sunnyvale, CA 94086, USA and Amersham International, Amersham, UK.
Nucleic Acids Res. 1998 Jun 1;26(11):2797-802. doi: 10.1093/nar/26.11.2797.
Over the past 10 years, fluorescent end-labeling of DNA fragments has evolved into the preferred method of DNA detection for a wide variety of applications, including DNA sequencing and PCR fragment analysis. One of the advantages inherent in fluorescent detection methods is the ability to perform multi-color analyses. Unfortunately, labeling DNA fragments with different fluorescent tags generally induces disparate relative electrophoretic mobilities for the fragments. Mobility-shift corrections must therefore be applied to the electrophoretic data to compensate for these effects. These corrections may lead to increased errors in the estimation of DNA fragment sizes and reduced confidence in DNA sequence information. Here, we present a systematic study of the relationship between dye structure and the resultant electrophoretic mobility of end-labeled DNA fragments. We have used a cyanine dye family as a paradigm and high-resolution capillary array electrophoresis (CAE) as the instrumentation platform. Our goals are to develop a general understanding of the effects of dyes on DNA electrophoretic mobility and to synthesize a family of DNA end-labels that impart identically matched mobility influences on DNA fragments. Such matched sets could be used in DNA sequencing and fragment sizing applications on capillary electrophoresis instrumentation.
在过去十年中,DNA片段的荧光末端标记已发展成为用于多种应用(包括DNA测序和PCR片段分析)的首选DNA检测方法。荧光检测方法固有的优点之一是能够进行多色分析。不幸的是,用不同荧光标签标记DNA片段通常会导致片段具有不同的相对电泳迁移率。因此,必须对电泳数据应用迁移率校正以补偿这些影响。这些校正可能会导致DNA片段大小估计中的误差增加,并降低对DNA序列信息的置信度。在这里,我们对染料结构与末端标记的DNA片段的电泳迁移率之间的关系进行了系统研究。我们使用了花菁染料家族作为范例,并将高分辨率毛细管阵列电泳(CAE)作为仪器平台。我们的目标是全面了解染料对DNA电泳迁移率的影响,并合成一类对DNA片段具有相同匹配迁移率影响的DNA末端标记。这样的匹配组可用于毛细管电泳仪器上的DNA测序和片段大小测定应用。