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高通量基因中心调控网络作图的增强型酵母单杂交分析。

Enhanced yeast one-hybrid assays for high-throughput gene-centered regulatory network mapping.

机构信息

Program in Systems Biology, University of Massachusetts Medical School, Worcester, Massachusetts, USA.

出版信息

Nat Methods. 2011 Oct 30;8(12):1059-64. doi: 10.1038/nmeth.1748.

Abstract

A major challenge in systems biology is to understand the gene regulatory networks that drive development, physiology and pathology. Interactions between transcription factors and regulatory genomic regions provide the first level of gene control. Gateway-compatible yeast one-hybrid (Y1H) assays present a convenient method to identify and characterize the repertoire of transcription factors that can bind a DNA sequence of interest. To delineate genome-scale regulatory networks, however, large sets of DNA fragments need to be processed at high throughput and high coverage. Here we present enhanced Y1H (eY1H) assays that use a robotic mating platform with a set of improved Y1H reagents and automated readout quantification. We demonstrate that eY1H assays provide excellent coverage and identify interacting transcription factors for multiple DNA fragments in a short time. eY1H assays will be an important tool for mapping gene regulatory networks in Caenorhabditis elegans and other model organisms as well as in humans.

摘要

系统生物学的一个主要挑战是理解驱动发育、生理学和病理学的基因调控网络。转录因子与调节基因组区域之间的相互作用提供了基因控制的第一级。兼容 Gateway 的酵母单杂交 (Y1H) 测定法提供了一种方便的方法来鉴定和表征可以结合感兴趣的 DNA 序列的转录因子库。然而,为了描绘基因组规模的调控网络,需要高通量和高覆盖率地处理大量的 DNA 片段。在这里,我们提出了增强型 Y1H (eY1H) 测定法,该方法使用带有一组改良的 Y1H 试剂和自动化读取定量的机器人交配平台。我们证明,eY1H 测定法在短时间内提供了出色的覆盖范围,并鉴定了多个 DNA 片段的相互作用转录因子。eY1H 测定法将成为绘制秀丽隐杆线虫和其他模式生物以及人类基因调控网络的重要工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c8d6/3235803/d806f39c41ba/nihms-329766-f0001.jpg

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