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首页> 外文期刊>RNA >Escherichia coli tmRNA lacking pseudoknot 1 tags truncated proteins in vivo and in vitro.
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Escherichia coli tmRNA lacking pseudoknot 1 tags truncated proteins in vivo and in vitro.

机译:缺乏伪结1标签的大肠杆菌tmRNA在体内和体外均截短了蛋白质。

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摘要

Transfer-messenger RNA (tmRNA) and protein SmpB facilitate trans-translation, a quality-control process that tags truncated proteins with short peptides recognized by a number of proteases and recycles ribosomes stalled at the 3' end of mRNA templates lacking stop codons. The tmRNA molecule is a hybrid of tRNA- and mRNA-like domains that are usually connected by four pseudoknots (pk1-pk4). Replacement of pk1 with a single-stranded RNA yields pk1L, a mutant tmRNA that tags truncated proteins very poorly in vitro but very efficiently in vivo. However, deletion of the whole pk1 is deleterious for protein tagging. In contrast, deletion of helix 4 yields Deltah4, a fully functional tmRNA derivative containing a single hairpin instead of pk1. Further deletions in the pk1 segment yield two subclasses of mutant tmRNAs that are unable to tag truncated proteins, but some of them bind to stalled ribosomes. Our studies demonstrate that pk1 is not essential for tmRNA functions but contributes to the stability of the tmRNA structure. Our studies also indicate that the length of this RNA segment is critical for both tmRNA binding to the ribosome and resumption of translation.
机译:传递信使RNA(tmRNA)和蛋白质SmpB促进了转译,这是一种质量控制过程,该过程可以用许多蛋白酶识别的短肽标记截短的蛋白,并回收停滞在缺少终止密码子的mRNA模板3'端的核糖体。 tmRNA分子是通常由四个假结(pk1-pk4)连接的tRNA和mRNA类结构域的杂种。用单链RNA替代pk1会产生pk1L,这是一种突变tmRNA,在体外对截短蛋白的标记非常差,但在体内却非常有效。但是,整个pk1的删除对蛋白质标签有害。相比之下,删除螺旋4会产生Deltah4,这是一个功能齐全的tmRNA衍生物,只包含一个发夹而不是pk1。 pk1区段中的进一步删除产生了两个突变的tmRNA亚类,它们无法标记截短的蛋白,但其中一些与停滞的核糖体结合。我们的研究表明pk1并不是tmRNA功能所必需的,但有助于tmRNA结构的稳定性。我们的研究还表明,该RNA片段的长度对于tmRNA与核糖体的结合和翻译的恢复都是至关重要的。

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