Department of Life Sciences (BK21 program), Chung-Ang University, Seoul, Korea.
FEMS Microbiol Lett. 2010 Dec;313(2):141-7. doi: 10.1111/j.1574-6968.2010.02137.x. Epub 2010 Nov 4.
Using a specialized ribosome system, previous studies have identified G791 in Escherichia coli 16S rRNA as an invariant and essential residue for ribosome function. To investigate the functional role of G791, we searched for multicopy suppressors that partially restored the protein synthesis ability of mutant ribosomes bearing a G to U substitution at position 791 (U791 ribosomes). Analyses of isolated multicopy suppressors showed that overexpression of initiation factor 1 (IF1) enhanced the protein synthesis ability of U791 ribosomes. In contrast, overexpression of initiation factor 2 (IF2) or IF3 did not enhance the protein synthesis ability of wild-type or U791 ribosomes, and overexpression of IF1 did not affect the function of wild-type or mutant ribosomes bearing nucleotide substitutions in other regions of 16S rRNA. Analyses of sucrose gradient profiles of ribosomes showed that overexpression of IF1 marginally enhanced the subunit association of U791 ribosomes and indicated lower binding affinity of U791 ribosomes to IF1. Our findings suggest the involvement of IF1 in the restoration of the P-site function that was impaired by a nucleotide substitution at residue G791.
利用专门的核糖体系统,先前的研究已经确定了大肠杆菌 16S rRNA 中的 G791 是核糖体功能所必需的不变残基。为了研究 G791 的功能作用,我们搜索了多拷贝抑制子,这些抑制子可以部分恢复在位置 791 发生 G 到 U 取代的突变核糖体的蛋白质合成能力(U791 核糖体)。对分离的多拷贝抑制子的分析表明,起始因子 1 (IF1) 的过表达增强了 U791 核糖体的蛋白质合成能力。相比之下,起始因子 2 (IF2) 或 IF3 的过表达并没有增强野生型或 U791 核糖体的蛋白质合成能力,IF1 的过表达也不会影响在 16S rRNA 的其他区域发生核苷酸取代的野生型或突变核糖体的功能。核糖体蔗糖梯度分析表明,IF1 的过表达略微增强了 U791 核糖体的亚基结合,表明 U791 核糖体与 IF1 的结合亲和力降低。我们的发现表明 IF1 参与了由残基 G791 上的核苷酸取代引起的 P 位功能的恢复。