Said B, Cole J R, Nomura M
Department of Biological Chemistry, University of California, Irvine 92717.
Nucleic Acids Res. 1988 Nov 25;16(22):10529-45. doi: 10.1093/nar/16.22.10529.
The L11 ribosomal protein operon of Escherichia coli contains the genes for L11 and L1 and is feedback regulated by the translational repressor L1. Both the L1 binding site on 23S rRNA and the L1 repressor target site on L11 operon mRNA share similar proposed secondary structures and contain some primary sequence identity. Several site-directed mutations in the binding region of 23S rRNA were constructed and their effects on binding were examined. For in vitro analysis, a filter binding method was used. For in vivo analysis, a conditional expression system was used to overproduce a 23S rRNA fragment containing the L1 binding region, which leads to specific derepression of the synthesis of L11 and L1. Changes in the shared region of the 23S rRNA L1 binding site produced effects on L1 binding similar to those found previously in analysis of corresponding changes in the L11 operon mRNA target site. The results support the hypothesis that r-protein L1 interacts with both 23S rRNA and L11 operon mRNA by recognizing similar features on both RNAs.
大肠杆菌的L11核糖体蛋白操纵子包含L11和L1的基因,并受翻译阻遏物L1的反馈调节。23S rRNA上的L1结合位点和L11操纵子mRNA上的L1阻遏物靶位点都具有相似的二级结构,并且在一级序列上有一些相同之处。构建了23S rRNA结合区域的几个定点突变,并检测了它们对结合的影响。对于体外分析,使用了滤膜结合法。对于体内分析,使用了一个条件表达系统来过量表达包含L1结合区域的23S rRNA片段,这导致L11和L1合成的特异性去阻遏。23S rRNA L1结合位点共享区域的变化对L1结合产生的影响,与先前在L11操纵子mRNA靶位点相应变化分析中发现的影响相似。这些结果支持了核糖体蛋白L1通过识别两种RNA上的相似特征而与23S rRNA和L11操纵子mRNA相互作用的假说。