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Following translation by single ribosomes one codon at a time

机译:由单个核糖体翻译后,一次一个密码子

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We have followed individual ribosomes as they translate single messenger RNA hairpins tethered by the ends to optical tweezers. Here we reveal that translation occurs through successive translocation-and-pause cycles. The distribution of pause lengths, with a median of 2.8 s, indicates that at least two rate-determining processes control each pause. Each translocation step measures three bases-one codon-and occurs in less than 0.1 s. Analysis of the times required for translocation reveals, surprisingly, that there are three substeps in each step. Pause lengths, and thus the overall rate of translation, depend on the secondary structure of the mRNA; the applied force destabilizes secondary structure and decreases pause durations, but does not affect translocation times. Translocation and RNA unwinding are strictly coupled ribosomal functions.
机译:我们跟踪了单个核糖体,因为它们将末端束缚的单个信使RNA发夹翻译成光学镊子。在这里,我们揭示了翻译是通过连续的易位和暂停循环发生的。暂停长度的分布(中位数为2.8 s)表明,至少有两个速率确定过程控制每个暂停。每个易位步骤测量三个碱基(一个密码子),并且发生时间少于0.1 s。令人吃惊的是,对易位所需时间的分析表明,每个步骤都有三个子步骤。暂停长度和因此的总翻译率取决于mRNA的二级结构。施加的力会破坏二级结构的稳定性并减少停顿持续时间,但不会影响移位时间。易位和RNA解旋是严格结合的核糖体功能。

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