Wirtz E, Hoek M, Cross G A
Laboratory of Molecular Parasitology, The Rockefeller University, 1230 York Avenue, New York, NY 10021-6399, USA.
Nucleic Acids Res. 1998 Oct 15;26(20):4626-34. doi: 10.1093/nar/26.20.4626.
Inability of T7 RNA polymerase to processively transcribe higher eukaryotic chromatin is interpreted as a correlate of its reported inhibition by nucleosomes on reconstituted templates in vitro . We used chromosomally integrated reporter cassettes to examine features of T7 transcription in a lower eukaryotic system. Luciferase reporters were targeted to rDNA in transgenic Trypanosoma brucei stably expressing the phage polymerase. Because trypanosome mRNAs are capped by RNA splicing in trans , T7 transcription could be gauged by luciferase activity. In contrast to findings from higher eukaryotes, T7 transcription is vigorous and processive on chromatin templates in T.brucei , surpassing levels achieved with endogenous promoters, including those recruiting RNA polymerase I. This may be a reflection of intrinsic differences in chromatin structure between differently evolved eukaryotes or of an integration site that is exceptionally permissive for T7 transcription due to a local accessible chromatin conformation. T7 transcription could be manipulated to achieve different levels of constitutive expression, through the use of promoter mutations. Moreover, T7 initiation could be regulated by the prokaryotic Tet repressor and elongation halted by T7 terminator sequences. We have exploited these features to construct a robust inducible expression system, whose utility potentially extends to other trans -splicing organisms.
T7 RNA聚合酶无法连续转录高等真核染色质,这被解释为与其在体外重组模板上被核小体抑制的报道相关。我们使用染色体整合的报告盒来研究低等真核系统中T7转录的特征。荧光素酶报告基因被靶向稳定表达噬菌体聚合酶的转基因布氏锥虫的rDNA。由于锥虫mRNA通过反式RNA剪接加帽,因此可以通过荧光素酶活性来衡量T7转录。与高等真核生物的研究结果相反,T7转录在布氏锥虫的染色质模板上活跃且连续,超过了内源性启动子(包括那些募集RNA聚合酶I的启动子)所达到的水平。这可能反映了不同进化的真核生物之间染色质结构的内在差异,或者是由于局部可及的染色质构象而对T7转录异常允许的整合位点。通过使用启动子突变,可以操纵T7转录以实现不同水平的组成型表达。此外,T7起始可由原核Tet阻遏物调节,延伸可被T7终止序列阻断。我们利用这些特征构建了一个强大的诱导表达系统,其效用可能扩展到其他反式剪接生物。