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The translational fidelity function of IF3 during transition from the 30 S initiation complex to the 70 S initiation complex

机译:IF3从30 S起始复合物过渡到70 S起始复合物期间的翻译保真功能

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摘要

IF3 has a fidelity function in the initiation of translation, inducing the dissociation of fMet-tRNA(fMer) from the 30 S initiation complexes (30SIC) containing a non-canonical initiation triplet (e.g. AUU) in place of a canonical initiation triplet (e.g., AUG). IF2 has a complementary role, selectively promoting initiator tRNA binding to the ribosome. Here, we used parallel rapid kinetics measurements of GTP hydrolysis, Pi release, light-scattering, and changes in intensities of fluorophore-labeled IF2 and fMet-tRNA(fMet) to determine the effects on both 30SIC formation and 30SIC conversion to 70 S initiation complexes (70SIC) of (a) substituting AUG with AUU, and/or (b) omitting IF3, and/or (c) replacing GTP with the non-hydrolyzable analog GDPCP. We demonstrate that the presence or absence of IF3 has, at most, minor effects on the rate of 30SIC formation using either AUG or AUU as the initiation codon, and conclude that the high affinity of IF2 for both 30 S subunit and initiator tRNA overrides any perturbation of the codon-anticodon interaction resulting from AUU for AUG substitution. In contrast, replacement of AUG by AUU leads to a dramatic reduction in the rate of 70SIC formation from 30SIC upon addition of 50 S subunits. Interpreting our results in the framework of a quantitative kinetic scheme leads to the conclusion that, within the overall process of 70SIC formation, the step most affected by substituting AUU for AUG involves the conversion of an initially labile 70 S ribosome into a more stable complex. In the absence of IF3, the difference between AUG and AUU largely disappears, with each initiation codon affording rapid 70SIC formation, leading to the hypothesis that it is the rate of IF3 dissociation from the 70 S ribosome during IC70S formation that is critical to its fidelity function. (c) 2007 Elsevier Ltd. All rights reserved.
机译:IF3在翻译起始中具有保真功能,诱导fMet-tRNA(fMer)从30 S起始复合物(30SIC)中解离,该复合物包含非经典起始三联体(例如AUU),而不是经典起始三联体(例如,八月)。 IF2具有互补作用,选择性促进启动子tRNA与核糖体结合。在这里,我们使用平行快速动力学测量GTP水解,Pi释放,光散射以及荧光团标记的IF2和fMet-tRNA(fMet)的强度变化,以确定对30SIC形成和30SIC转化为70S起始的影响(a)用AUU代替AUG,和/或(b)省略IF3,和/或(c)用不可水解的类似GDPCP取代GTP的复合物(70SIC)。我们证明IF3的存在或不存在最多对使用AUG或AUU作为起始密码子的30SIC形成速率产生较小影响,并得出结论,IF2对30 S亚基和启动子tRNA的高亲和力优先于任何AUU替代AUG引起的密码子-反密码子相互作用的扰动。相比之下,用AUU替代AUG会导致在添加50 S亚基时从30SIC急剧降低70SIC的形成速率。在定量动力学方案的框架内解释我们的结果得出结论,在70SIC形成的整个过程中,用AUU代替AUG影响最大的步骤涉及将最初不稳定的70 S核糖体转化为更稳定的复合物。在没有IF3的情况下,AUG和AUU之间的差异基本消失了,每个起始密码子都提供了快速的70SIC形成,从而导致了一个假说,即IC70S形成过程中IF3从70 S核糖体解离的速率对其保真度至关重要。功能。 (c)2007 Elsevier Ltd.保留所有权利。

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