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Analysis of the interaction between bovine mitochondrial 28 S ribosomal subunits and mRNA

机译:牛线粒体28 S核糖体亚基与mRNA相互作用的分析

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The small subunit of the bovine mitochondrial ribosome forms a tight complex with mRNAs. This [28 S:mRNA] complex forms as readily on circular mRNAs as on linear mRNAs indicating that a free 5' end on the mRNA is not required for the interaction observed. The effects of monovalent cations on the equilibrium association constant and on the forward and reverse rate constants governing this interaction have been determined. Monovalent cations have a strong effect on the forward rate constant. Increasing the KC1 concentration from 1 mM to 100 mM reduces kon by nearly 100-fold. Monovsilent cations have only a small effect on the reverse rate constant, ko[[. Analysis of these data indicates that the rate laws governing the formation and dissociation of the [28 S:mRNA] complex cannot be deduced from the chemical equation. This observation suggests that there are 'hidden intermediates' in the formation and dissociation of this complex. The implications of these observations are discussed in terms of a model for the interaction between the mitochondrial 28 S subunit and mRNAs.
机译:牛线粒体核糖体的小亚基与mRNA形成紧密的复合物。这种[28 S:mRNA]复合物在环状mRNA和线性mRNA上的形成都很容易,这表明观察到的相互作用不需要mRNA的5'端游离。已经确定了单价阳离子对平衡缔合常数以及支配这种相互作用的正向和反向速率常数的影响。一价阳离子对正向速率常数有很大的影响。将KC1浓度从1 mM增加到100 mM会使kon降低近100倍。单硅烷基阳离子对反向速率常数ko [[。对这些数据的分析表明,无法从化学方程式推导控制[28 S:mRNA]配合物形成和解离的速率规律。该观察结果表明在该复合物的形成和解离中存在“隐藏的中间体”。根据线粒体28 S亚基和mRNA之间相互作用的模型讨论了这些观察结果的含义。

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