Zwick M G, Imboden M A, Paule M R
Department of Biochemistry, Colorado State University, Fort Collins 80523.
Nucleic Acids Res. 1991 Apr 11;19(7):1681-6. doi: 10.1093/nar/19.7.1681.
An RNA polymerase III in vitro transcription system has been developed from the protist Acanthamoeba castellanii. The system is dependent on a cloned 5S RNA gene and utilizes a nuclear extract which contains all the necessary protein components. The system is assembled from completely homologous components. Primer extension and RNA sequencing analysis confirm that the in vitro 5S RNA transcript is identical to the 5S RNA isolated from cells. The transcription complex forms unusually rapidly on the 5S RNA gene and is stable to challenge by excess competitor templates. Several 5' deletion mutants were constructed and indicate that the region upstream of -33 is dispensable. Deletion to +16 show the region between -33 and +16 to be required for transcription, a region outside the canonical internal control region.
已从原生生物卡氏棘阿米巴中开发出一种RNA聚合酶III体外转录系统。该系统依赖于一个克隆的5S RNA基因,并利用一种含有所有必需蛋白质成分的核提取物。该系统由完全同源的成分组装而成。引物延伸和RNA测序分析证实,体外5S RNA转录本与从细胞中分离的5S RNA相同。转录复合物在5S RNA基因上形成异常迅速,并且对过量竞争模板的挑战具有稳定性。构建了几个5'缺失突变体,结果表明-33上游区域是可有可无的。缺失到+16表明-33和+16之间的区域是转录所必需的,该区域在典型的内部控制区域之外。