Genome Damage and Stability Centre, School of Life Sciences, University of Sussex, Falmer, Sussex, BN1 9RQ , UK.
Gene. 2011 Sep 15;484(1-2):75-85. doi: 10.1016/j.gene.2011.05.028. Epub 2011 Jun 2.
The lack of a rapid and efficient system to regulate transcriptional induction in the fission yeast Schizosaccharomyces pombe is currently a limitation of this model eukaryote. The commonly used nmt1 promoter has excellent dynamic range and a low "off-state" transcription, but takes 14-16 hours to induce upon thiamine withdrawal. Conversely, other induction systems have rapid response times, but suffer from a limited dynamic range and/or relatively high levels of off-state transcription. Recently, the urg1 gene was identified as a rapidly induced transcript, responding to uracil addition in ~30 min and exhibiting low off-state transcription and high dynamic range. However, attempts to reproduce this ectopically result in a significant increase in off-state transcription, severely limiting utility. To overcome this, we have adapted the Cre/lox recombination-mediated cassette exchange (RCME) system to facilitate easy insertion of sequences at the urg1 locus. We show that the P(urg1) induction kinetics are maintained when ectopic open reading frames (ORFs) replace the native urg1 ORF. As proof of principle, we characterise HO-endonuclease expression in cells harbouring a novel S. pombe single-strand annealing (SSA) assay. After 60 min induction we observe clear double-strand breaks, demonstrate >90% of cells are committed to SSA and show that the Rad22(Rad52) repair protein associates robustly with sequences adjacent to the DSB. This inducible system will be a valuable tool for future studies in S. pombe.
裂殖酵母 Schizosaccharomyces pombe 中缺乏一种快速有效的转录诱导调控系统,这是目前该模式真核生物的一个局限性。常用的 nmt1 启动子具有极好的动态范围和低的“关闭状态”转录,但在硫胺素耗尽后需要 14-16 小时才能诱导。相反,其他诱导系统具有快速的响应时间,但存在动态范围有限和/或关闭状态转录相对较高的问题。最近,urg1 基因被鉴定为一种快速诱导的转录本,在添加尿嘧啶后约 30 分钟响应,表现出低关闭状态转录和高动态范围。然而,试图在外源异位表达时,会导致关闭状态转录显著增加,严重限制了其应用。为了克服这个问题,我们已经采用 Cre/lox 重组介导的盒交换 (RCME) 系统来方便地在 urg1 基因座插入序列。我们表明,当异位开放阅读框 (ORF) 取代天然 urg1 ORF 时,P(urg1) 诱导动力学得以维持。作为原理验证,我们在含有新型裂殖酵母单链退火 (SSA) 测定的细胞中表征了 HO 内切酶的表达。诱导 60 分钟后,我们观察到明显的双链断裂,证明 >90%的细胞已启动 SSA,并表明 Rad22(Rad52) 修复蛋白与 DSB 附近的序列强烈结合。这个可诱导的系统将成为裂殖酵母未来研究的有力工具。