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Testing constraints on rRNA bases that make nonsequence-specific contacts with the codon center dot anticodon complex in the ribosomal A site

机译:测试对rRNA碱基的限制,该碱基与核糖体A位点的密码子中心点反密码子复合物进行非序列特异性接触

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摘要

During protein synthesis, interactions between the decoding center of the ribosome and the codon center dot anticodon complexes maintain translation accuracy. Correct aminoacyl-tRNAs induce the ribosome to shift into a "closed'' conformation that both blocks tRNA dissociation and accelerates the process of tRNA acceptance. As part of the ribosomal recognition of cognate tRNAs, the rRNA nucleotides G530 and A1492 form a hydrogen-bonded pair that interacts with the middle position of the codon center dot anticodon complex and recognizes correct Watson-Crick base pairs. Exchanging these two nucleotides (A530 and G1492) would not disrupt these interactions, suggesting that such a double mutant ribosome might properly recognize tRNAs and support viability. We find, however, that exchange mutants retain little ribosomal activity. We suggest that even though the exchanged nucleotides might function properly during tRNA recruitment, they might disrupt one or more other functions of the nucleotides during other stages of protein synthesis.
机译:在蛋白质合成过程中,核糖体的解码中心和密码子中心点反密码子复合物之间的相互作用保持翻译的准​​确性。正确的氨酰基-tRNA诱导核糖体转变为“封闭”构象,这既阻断了tRNA的解离并加速了tRNA的接受;作为核糖体识别tRNA的一部分,rRNA核苷酸G530和A1492形成氢键与密码子中心点反密码子复合体的中间位置相互作用并识别正确的Watson-Crick碱基对的碱基对,交换这两个核苷酸(A530和G1492)不会破坏这些相互作用,这表明这种双突变核糖体可能正确识别了tRNA和然而,我们发现交换突变体保留了很少的核糖体活性,我们认为即使在tRNA募集期间交换的核苷酸可能正常发挥作用,它们也可能在蛋白质合成的其他阶段破坏核苷酸的一种或多种其他功能。

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