La Teana A, Pon C L, Gualerzi C O
Department of Biology, University of Camerino, Italy.
Proc Natl Acad Sci U S A. 1993 May 1;90(9):4161-5. doi: 10.1073/pnas.90.9.4161.
The influence of the rare initiation triplet AUU on mRNA translation was investigated by comparing the activity of two pairs of model mRNAs that differ in the length of Shine-Dalgarno and spacer sequences. Irrespective of the initiation triplet (AUG or AUU), all mRNAs had similar template activity in vitro, but translation of AUU mRNAs depended more on initiation factor (IF) 2 and less on IF3 than that of AUG mRNAs. Increasing the IF3/ribosome ratio from 2 to 10 progressively inhibited the AUU mRNAs and abolished their capacity to compete for translating ribosomes with other mRNAs but did not affect activity of the AUG mRNAs. The effects induced by IF3 are from its different influence on on- and off-rates of the transition 30S preinitiation complex<==>30S initiation complex; depending on the nature of the initiation triplet (AUG or AUU) of the mRNA, IF3 shifts the position of equilibrium toward binding or dissociation of fMet-tRNA, respectively. Stimulation of fMet-tRNA binding and dissociation yields superimposable IF3 titration curves that saturate at an IF3/30S ratio of approximately 1, indicating that the data are from the interaction of one molecule of IF3 with the same 30S binding site. Both effects are either lost or strongly reduced with 30S mutants defective in IF3 binding. Translational repression of AUU mRNAs by IF3 is from the factor-dependent dissociation of fMet-tRNA from 30S subunits, which becomes relevant when excess IF3 interferes with the formation of 70S initiation complex, presumably by interacting with 50S subunit.
通过比较两对在Shine-Dalgarno序列和间隔序列长度上不同的模型mRNA的活性,研究了稀有起始三联体AUU对mRNA翻译的影响。无论起始三联体是AUG还是AUU,所有mRNA在体外都具有相似的模板活性,但与AUG mRNA相比,AUU mRNA的翻译对起始因子(IF)2的依赖性更强,对IF3的依赖性更弱。将IF3/核糖体的比例从2提高到10会逐渐抑制AUU mRNA,并消除它们与其他mRNA竞争翻译核糖体的能力,但不会影响AUG mRNA的活性。IF3诱导的效应源于其对30S前起始复合物⇔30S起始复合物转变的结合和解离速率的不同影响;根据mRNA起始三联体(AUG或AUU)的性质,IF3分别将平衡位置向fMet-tRNA的结合或解离方向移动。fMet-tRNA结合和解离的刺激产生了可叠加的IF3滴定曲线,在IF3/30S比例约为1时达到饱和,这表明数据来自一个IF3分子与相同30S结合位点的相互作用。对于在IF3结合方面存在缺陷的30S突变体,这两种效应都会丧失或大幅降低。IF对AUU mRNA的翻译抑制作用源于fMet-tRNA从30S亚基上的因子依赖性解离,当过量的IF3可能通过与50S亚基相互作用干扰70S起始复合物的形成时,这种解离就变得至关重要。