National Laboratory for Protein Engineering and Plant Genetic Engineering, College of Life Sciences, Peking University, Beijing 100871, People's Republic of China.
Mol Plant. 2011 May;4(3):546-55. doi: 10.1093/mp/ssr002. Epub 2011 Feb 22.
The activities of transcription factors (TFs) require interactions with specific DNA sequences and other regulatory proteins. To detect such interactions in Arabidopsis, we developed a high-throughput screening system with a Gateway-compatible Gal4-AD-TF library of 1589 Arabidopsis TFs, which can be easily screened by mating-based yeast-one-hybrid (Y1H) and yeast-two-hybrid (Y2H) methods. The efficiency of the system was validated by examining two well-characterized TF-DNA and TF-protein interactions: the CHE-CCA1 promoter interaction by Y1H and NPR1-TGAs interactions by Y2H. We used this system to identify eight TFs that interact with a Mediator subunit, Med25, a key regulator in JA signaling. We identified five TFs that interacted with the GCC-box cis-element in the promoter of PDF1.2, a downstream gene of Med25. We found that three of these TFs, all from the AP2-EREBP family, interact directly both with Med25 and the GCC-box of PDF1.2, suggesting that Med25 regulates PDF1.2 expression through these three TFs. These results demonstrate that this high-throughput Y1H/Y2H screening system is an efficient tool for studying transcriptional regulation networks in Arabidopsis. This system will be available for other Arabidopsis researchers, and thus it provides a vital resource for the Arabidopsis community.
转录因子(TFs)的活性需要与特定的 DNA 序列和其他调节蛋白相互作用。为了在拟南芥中检测这种相互作用,我们开发了一种高通量筛选系统,该系统使用了一个兼容 Gateway 的 Gal4-AD-TF 文库,其中包含 1589 个拟南芥 TFs,可以通过基于交配的酵母单杂交(Y1H)和酵母双杂交(Y2H)方法进行轻松筛选。该系统的效率通过检查两个特征明确的 TF-DNA 和 TF-蛋白相互作用得到了验证:通过 Y1H 检查 CHE-CCA1 启动子相互作用,通过 Y2H 检查 NPR1-TGAs 相互作用。我们使用该系统鉴定了与 Mediator 亚基 Med25 相互作用的八个 TF,后者是 JA 信号转导中的关键调节因子。我们鉴定了五个与 PDF1.2 启动子中的 GCC 盒顺式元件相互作用的 TF,后者是 Med25 的下游基因。我们发现这五个 TF 中的三个,都来自 AP2-EREBP 家族,与 Med25 和 PDF1.2 的 GCC 盒直接相互作用,表明 Med25 通过这三个 TF 调节 PDF1.2 的表达。这些结果表明,这种高通量 Y1H/Y2H 筛选系统是研究拟南芥转录调控网络的有效工具。该系统将可供其他拟南芥研究人员使用,因此为拟南芥社区提供了重要资源。