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The ribosome prohibits the G center dot U wobble geometry at the first position of the codon-anticodon helix

机译:核糖体在密码子-反密码子螺旋的第一个位置禁止G中心点U摆动

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摘要

Precise conversion of genetic information into proteins is essential to cellular health. However, a margin of error exists and is at its highest on the stage of translation of mRNA by the ribosome. Here we present three crystal structures of 70S ribosome complexes with messenger RNA and transfer RNAs and show that when a G center dot U base pair is at the first position of the codon-anticodon helix a conventional wobble pair cannot form because of inescapable steric clash between the guanosine of the A codon and the key nucleotide of decoding center adenosine 1493 of 16S rRNA. In our structure the rigid ribosomal decoding center, which is identically shaped for cognate or near-cognate tRNAs, forces this pair to adopt a geometry close to that of a canonical G center dot C pair. We further strengthen our hypothesis that spatial mimicry due either to base tautomerism or ionization dominates the translation infidelity mechanism.
机译:将遗传信息精确转换为蛋白质对于细胞健康至关重要。但是,存在误差范围,并且该误差范围在核糖体翻译mRNA的阶段达到最高。在这里,我们介绍了具有信使RNA和转移RNA的70S核糖体复合物的三个晶体结构,并显示了当G中心点U碱基对位于密码子-反密码子螺旋的第一个位置时,由于之间不可避免的空间冲突,无法形成常规的摆动对A密码子的鸟苷和16S rRNA的解码中心腺苷1493的关键核苷酸。在我们的结构中,刚性的核糖体解码中心(针对同源或近同源的tRNA具有相同的形状)迫使该对采用接近规范G中心点C对的几何形状。我们进一步加强了这样的假说,即由于碱基互变异构或电离作用引起的空间模仿在翻译不忠机制中占主导地位。

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