Watson Adam T, Daigaku Yasukazu, Mohebi Saed, Etheridge Thomas J, Chahwan Charly, Murray Johanne M, Carr Antony M
Genome Damage and Stability Centre, School of Life Sciences, University of Sussex, Brighton, East Sussex, United Kingdom.
PLoS One. 2013 Dec 20;8(12):e83800. doi: 10.1371/journal.pone.0083800. eCollection 2013.
The ability to study protein function in vivo often relies on systems that regulate the presence and absence of the protein of interest. Two limitations for previously described transcriptional control systems that are used to regulate protein expression in fission yeast are: the time taken for inducing conditions to initiate transcription and the ability to achieve very low basal transcription in the "OFF-state". In previous work, we described a Cre recombination-mediated system that allows the rapid and efficient regulation of any gene of interest by the urg1 promoter, which has a dynamic range of approximately 75-fold and which is induced within 30-60 minutes of uracil addition. In this report we describe easy-to-use and versatile modules that can be exploited to significantly tune down Purg1 "OFF-levels" while maintaining an equivalent dynamic range. We also provide plasmids and tools for combining Purg1 transcriptional control with the auxin degron tag to help maintain a null-like phenotype. We demonstrate the utility of this system by improved regulation of HO-dependent site-specific DSB formation, by the regulation Rtf1-dependent replication fork arrest and by controlling Rhp18(Rad18)-dependent post replication repair.
在体内研究蛋白质功能的能力通常依赖于调节目标蛋白质存在与否的系统。用于调节裂殖酵母中蛋白质表达的先前描述的转录控制系统存在两个局限性:诱导条件启动转录所需的时间以及在“关闭状态”下实现极低基础转录的能力。在先前的工作中,我们描述了一种由Cre重组介导的系统,该系统允许通过urg1启动子快速有效地调节任何感兴趣的基因,其动态范围约为75倍,并且在添加尿嘧啶后30 - 60分钟内被诱导。在本报告中,我们描述了易于使用且通用的模块,这些模块可用于在保持等效动态范围的同时显著降低Purg1的“关闭水平”。我们还提供了用于将Purg1转录控制与生长素降解标签相结合的质粒和工具,以帮助维持类似缺失的表型。我们通过改进对HO依赖性位点特异性双链断裂形成的调节、调节Rtf1依赖性复制叉停滞以及控制Rhp18(Rad18)依赖性复制后修复来证明该系统的实用性。