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首页> 外文期刊>The Journal of biological chemistry >Active and Accurate trans-Translation Requires Distinct Determinants in the C-terminal Tail of SmpB Protein and the mRNA-like Domain of Transfer Messenger RNA (tmRNA)
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Active and Accurate trans-Translation Requires Distinct Determinants in the C-terminal Tail of SmpB Protein and the mRNA-like Domain of Transfer Messenger RNA (tmRNA)

机译:活性和准确的跨转换需要在SMPB蛋白的C末端尾部和转移信使RNA(TMRNA)的mRNA样域中的不同决定因素

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Unproductive ribosome stalling in eubacteria is resolved by the actions of SmpB protein and transfer messenger (tm) RNA. We examined the functional significance of conserved regions of SmpB and tmRNA to the trans-translation process. Our investigations reveal that the N-terminal 20 residues of SmpB, which are located near the ribosomal decoding center, are dispensable for all known SmpB activities. In contrast, a set of conserved residues that reside at the junction between the tmRNA-binding core and the C-terminal tail of SmpB play an important role in tmRNA accommodation. Our data suggest that the highly conserved glycine 132 acts as a flexible hinge that enables movement of the C-terminal tail, thus permitting proper positioning and establishment of the tmRNA open reading frame (ORF) as the surrogate template. To gain further insights into the function of the SmpB C-terminal tail, we examined the tagging activity of hybrid variants of tmRNA and the SmpB protein, in which the tmRNA ORF or the SmpB C-terminal tail was substituted with the equivalent but highly divergent sequences from Francisella tularensis. We observed that the hybrid tmRNA was active but resulted in less accurate selection of the resume codon. Cognate hybrid SmpB was necessary to restore activity. Furthermore, accurate tagging was observed when the identity of the resume codon was reverted from GGC to GCA. Taken together, these data suggest that the engagement of the tmRNA ORF and the selection of the correct translation resumption point are distinct activities that are influenced by independent tmRNA and SmpB determinants.
机译:通过SMPB蛋白和转移信使(TM)RNA的作用来解决盲肠菌中的非生产性核糖体停滞。我们研究了SMPB和TMRNA对跨翻译过程的功能性意义。我们的研究表明,位于核糖体解码中心附近的SMPB的N-末端20残基用于所有已知的SMPB活性。相反,一组驻留在TMRNA结合核心与SMPB的C末端尾部之间的连接的残留物在TMRNA住宿中发挥着重要作用。我们的数据表明,高度保守的甘油132充当柔性铰链,使得C末端尾部的运动,从而允许适当的定位和建立TMRNA开放阅读框(ORF)作为替代模板。为了进一步了解SMPB C末端尾部的功能,我们检查了TMRNA和SMPB蛋白的杂化变体的标记活性,其中TMRNA ORF或SMPB C末端尾被取代等同但高度发散Francisella Tularensis的序列。我们观察到杂交TMRNA有效,但导致更准确的简历密码子选择。同源杂交SMPB是恢复活动所必需的。此外,当从GGC到GCA恢复恢复密码子的身份时,观察到精确标记。总之,这些数据表明TMRNA ORF的参与和正确的翻译恢复点的选择是独立TMRNA和SMPB决定簇影响的不同活动。

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