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Studies of translational misreading in vivo show that the ribosome very efficiently discriminates against most potential errors

机译:体内翻译误读的研究表明,核糖体非常有效地区分了大多数潜在的错误

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摘要

Protein synthesis must rapidly and repeatedly discriminate between a single correct and many incorrect aminoacyl-tRNAs. We have attempted to measure the frequencies of all possible missense errors by tRNAGlu UUC, tRNAAsp QUC and tRNATyr QUA. The most frequent errors involve three types of mismatched nucleotide pairs, U?U, U?C, or U?G, all of which can form a noncanonical base pair with geometry similar to that of the canonical U?A or C?G Watson-Crick pairs. Our system is sensitive enough to measure errors at other potential mismatches that occur at frequencies as low as 1 in 500,000 codons. The ribosome appears to discriminate this efficiently against any pair with non-Watson-Crick geometry. This extreme accuracy may be necessary to allow discrimination against the errors involving near Watson-Crick pairing.
机译:蛋白质合成必须快速,反复地区分单个正确的氨基酸错误和许多错误的氨酰基tRNA。我们试图通过tRNAGlu UUC,tRNAAsp QUC和tRNATyr QUA测量所有可能的错义错误的频率。最常见的错误涉及三种错配的核苷酸对,即U?U,U?C或U?G,所有这些均可形成几何形状与标准U?A或C?G Watson相似的非规范碱基对。克里克对。我们的系统足够灵敏,可以测量在500,000个密码子中的1个频率处发生的其他潜在不匹配错误。核糖体似乎可以有效地将其与具有非Watson-Crick几何的任何一对区分开。可能需要这种极高的准确性,以便能够区分涉及接近Watson-Crick配对的错误。

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