Leipold R J, Dhurjati P
Department of Chemical Engineering, University of Delaware, Newark 19716.
Biotechnol Prog. 1993 Sep-Oct;9(5):443-9. doi: 10.1021/bp00023a001.
Specialized ribosomes, developed by de Boer and co-workers at Genentech, carry a mutation in the anti-Shine-Dalgarno region of 16 S ribosomal RNA, the site of messenger RNA binding. A complementary mutation in the ribosome binding site (the Shine-Dalgarno region) of a particular messenger RNA results in specific and efficient translation of that messenger RNA on the specialized ribosomes. With this system, a fraction of the cell's ribosomes can be dedicated to the translation of a single messenger RNA; the remaining wild-type ribosomes carry out the normal cellular translation processes. Specialized ribosomes have been used for the overproduction of proteins, analysis of the feedback regulation of ribosomal RNA synthesis, and mutational analysis of 16 S ribosomal RNA. Experimental results related to each of these topics are summarized and discussed, and other potential applications are described. In particular, we propose a novel technique for mutational analysis of 23 S ribosomal RNA, the primary RNA constituent of the large ribosomal subunit, using the specialized ribosome approach.
由基因泰克公司的德布尔及其同事研发的特殊核糖体,其16S核糖体RNA的抗夏因-达尔加诺区域(信使RNA结合位点)存在一个突变。特定信使RNA的核糖体结合位点(夏因-达尔加诺区域)中的互补突变会导致该信使RNA在特殊核糖体上进行特异性高效翻译。利用这个系统,细胞中的一部分核糖体可专门用于单个信使RNA的翻译;其余野生型核糖体则进行正常的细胞翻译过程。特殊核糖体已被用于蛋白质的过量生产、核糖体RNA合成的反馈调节分析以及16S核糖体RNA的突变分析。总结并讨论了与这些主题相关的实验结果,并描述了其他潜在应用。特别是,我们提出了一种利用特殊核糖体方法对23S核糖体RNA(核糖体大亚基的主要RNA成分)进行突变分析的新技术。