Maag David, Algire Mikkel A, Lorsch Jon R
Department of Biophysics and Biophysical Chemistry, Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA.
J Mol Biol. 2006 Feb 24;356(3):724-37. doi: 10.1016/j.jmb.2005.11.083. Epub 2005 Dec 15.
During eukaryotic translation initiation, the 43 S ribosomal pre-initiation complex scans the mRNA in search of an AUG codon at which to begin translation. Start codon recognition halts scanning and triggers a number of events that commit the complex to beginning translation at that point on the mRNA. Previous studies in vitro and in vivo have indicated that eukaryotic initiation factors (eIFs) 1, 2 and 5 play key roles in these events. In addition, it was reported recently that the C-terminal domain of eIF1A is involved in maintaining the fidelity of start codon recognition. The molecular mechanisms by which these factors work together to ensure fidelity of start site selection remain poorly understood. Here, we report the quantitative characterization of energetic interactions between eIF1A, eIF5 and the AUG codon in an in vitro reconstituted yeast translation initiation system. Our results show that recognition of an AUG codon by the 43 S complex triggers an interaction between eIF5 and eIF1A, resulting in a shift in the equilibrium between two states of the pre-initiation complex. This AUG-dependent change may be a reorganization from a scanning-competent state to a scanning-incompetent state. Mutations in both eIF1A and eIF5 that increase initiation at non-AUG codons in vivo weaken the interaction between the two factors upon AUG recognition, while specifically strengthening it in response to a UUG codon. These data suggest strongly that the interaction between eIF1A and eIF5 is involved in maintaining the fidelity of start codon recognition in vivo.
在真核生物翻译起始过程中,43S核糖体预起始复合物扫描mRNA,寻找用于起始翻译的AUG密码子。起始密码子识别会停止扫描,并触发一系列事件,使复合物在mRNA上的该位点开始翻译。此前在体外和体内进行的研究表明,真核起始因子(eIFs)1、2和5在这些事件中发挥关键作用。此外,最近有报道称,eIF1A的C末端结构域参与维持起始密码子识别的保真度。这些因子共同作用以确保起始位点选择保真度的分子机制仍知之甚少。在此,我们报告了在体外重构的酵母翻译起始系统中,eIF1A、eIF5与AUG密码子之间能量相互作用的定量表征。我们的结果表明,43S复合物对AUG密码子的识别触发了eIF5与eIF1A之间的相互作用,导致预起始复合物两种状态之间的平衡发生转变。这种依赖于AUG的变化可能是从具有扫描能力的状态到不具有扫描能力的状态的重组。体内增加非AUG密码子起始的eIF1A和eIF5中的突变,会削弱AUG识别时这两个因子之间的相互作用,而对UUG密码子的反应则会特异性增强这种相互作用。这些数据有力地表明,eIF1A与eIF5之间的相互作用参与维持体内起始密码子识别的保真度。