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Nucleic Acids Res. 1996 Dec 1;24(23):4759-67. doi: 10.1093/nar/24.23.4759.
2
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YOYO标记的DNA分子在90度和120度脉冲场凝胶电泳过程中重新定向机制的实时成像。

Real-time imaging of the reorientation mechanisms of YOYO-labelled DNA molecules during 90 degrees and 120 degrees pulsed field gel electrophoresis.

作者信息

Gurrieri S, Smith S B, Wells K S, Johnson I D, Bustamante C

机构信息

Dipartimento di Scienze Chimiche, Universitá di Cantania, Italy.

出版信息

Nucleic Acids Res. 1996 Dec 1;24(23):4759-67. doi: 10.1093/nar/24.23.4759.

DOI:10.1093/nar/24.23.4759
PMID:8972863
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC146294/
Abstract

Pulsed field gel electrophoresis (PFGE) techniques have been developed to overcome the limitations of conventional electrophoresis and to increase the separation to DNA chromosomes of few megabase pairs in size. Despite of the large success of these techniques, the various separation protocols employed for PFGE experiments have been determined empirically. However, a deep understanding of the molecular mechanisms of motion responsible for DNA separation becomes necessary for the rational optimization of these techniques. This paper shows the first clear observations of individual molecules of DNA during the reorientation process in 90 degrees PFGE and 120 degrees PFGE. Real-time visualization of the DNA dynamics during PFGE was possible with the use of an epi-illumination fluorescence microscope specifically equipped to run these experiments and by staining the DNA with YOYO-1 (1,1'-(4,4,7,7-tetramethyl-4,7-diazaundecamethylene)-bis-4-[3-meth yl -2,3-dihydro-(benzo-1,3-oxazole)-2-methyl-idene]-quinolinium tetraiodide). This dye forms a very stable, highly fluorescent complex with double-stranded DNA and dramatically improves the quality of the DNA images. The results of computer simulations used to reproduce the molecular mechanisms of motion as well as the DNA separation features are also discussed.

摘要

脉冲场凝胶电泳(PFGE)技术的开发是为了克服传统电泳的局限性,并提高对大小为几兆碱基对的DNA染色体的分离能力。尽管这些技术取得了巨大成功,但用于PFGE实验的各种分离方案都是凭经验确定的。然而,要对这些技术进行合理优化,就必须深入了解导致DNA分离的分子运动机制。本文首次清晰观察到了在90度PFGE和120度PFGE重定向过程中DNA的单个分子。通过使用专门配备用于进行这些实验的落射荧光显微镜,并使用YOYO-1(1,1'-(4,4,7,7-四甲基-4,7-二氮杂十一烷二亚甲基)-双-4-[3-甲基-2,3-二氢-(苯并-1,3-恶唑)-2-亚甲基]-喹啉四碘化物)对DNA进行染色,实现了PFGE过程中DNA动态的实时可视化。这种染料与双链DNA形成非常稳定、高荧光的复合物,并显著提高了DNA图像的质量。还讨论了用于重现分子运动机制以及DNA分离特征的计算机模拟结果。