A novel synthetic-genetic-array-based yeast one-hybrid system for high discovery rate and short processing time

一种新型的基于合成基因阵列的酵母单杂交系统,具有高发现率和短处理时间。

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作者:Chung-Shu Yeh #,Zhifeng Wang #,Fang Miao,Hongyan Ma,Chung-Ting Kao,Tzu-Shu Hsu,Jhong-He Yu,Er-Tsi Hung,Chia-Chang Lin,Chen-Yu Kuan,Ni-Chiao Tsai,Chenguang Zhou,Guan-Zheng Qu,Jing Jiang,Guifeng Liu,Jack P Wang,Wei Li,Vincent L Chiang,Tien-Hsien Chang,Ying-Chung Jimmy Lin

Abstract

Eukaryotic gene expression is often tightly regulated by interactions between transcription factors (TFs) and their DNA cis targets. Yeast one-hybrid (Y1H) is one of the most extensively used methods to discover these interactions. We developed a high-throughput meiosis-directed yeast one-hybrid system using the Magic Markers of the synthetic genetic array analysis. The system has a transcription factor-DNA interaction discovery rate twice as high as the conventional diploid-mating approach and a processing time nearly one-tenth of the haploid-transformation method. The system also offers the highest accuracy in identifying TF-DNA interactions that can be authenticated in vivo by chromatin immunoprecipitation. With these unique features, this meiosis-directed Y1H system is particularly suited for constructing novel and comprehensive genome-scale gene regulatory networks for various organisms.

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