Sidorova Julia M, Li Nianzhen, Schwartz David C, Folch Albert, Monnat Raymond J
Department of Pathology, University of Washington, Seattle, Washington, USA.
Nat Protoc. 2009;4(6):849-61. doi: 10.1038/nprot.2009.54. Epub 2009 May 14.
Single molecule-based protocols have been gaining popularity as a way to visualize DNA replication at the global genomic- and locus-specific levels. These protocols take advantage of the ability of many organisms to incorporate nucleoside analogs during DNA replication, together with a method to display stretched DNA on glass for immunostaining and microscopy. We describe here a microfluidic platform that can be used to stretch and to capture labeled DNA molecules for replication analyses. This platform consists of parallel arrays of three-sided, 3- or 4-microm high, variable-width capillary channels fabricated from polydimethylsiloxane by conventional soft lithography, and of silane-modified glass coverslips to reversibly seal the open side of the channels. Capillary tension in these microchannels facilitates DNA loading, stretching and glass coverslip deposition from microliter-scale DNA samples. The simplicity and extensibility of this platform should facilitate DNA replication analyses using small samples from a variety of biological and clinical sources.
基于单分子的实验方案作为一种在全基因组和基因座特异性水平上可视化DNA复制的方法,越来越受到欢迎。这些实验方案利用了许多生物体在DNA复制过程中掺入核苷类似物的能力,以及一种在玻璃上展示拉伸DNA用于免疫染色和显微镜观察的方法。我们在此描述了一种微流控平台,可用于拉伸和捕获标记的DNA分子以进行复制分析。该平台由通过传统软光刻技术由聚二甲基硅氧烷制成的三边、3或4微米高、宽度可变的平行毛细管通道阵列,以及用于可逆密封通道开口侧的硅烷改性玻璃盖玻片组成。这些微通道中的毛细管张力有助于从微升规模的DNA样品中加载、拉伸DNA并沉积玻璃盖玻片。该平台的简单性和可扩展性应有助于使用来自各种生物和临床来源的小样本进行DNA复制分析。