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Co-evolution of Two GTPases Enables Efficient Protein Targeting in an RNA-less Chloroplast Signal Recognition Particle Pathway

机译:两个GTPases的共同进化使得在无RNA的叶绿体信号识别颗粒途径中有效的蛋白质靶向成为可能。

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摘要

The signal recognition particle (SRP) is an essential ribonucleoprotein particle that mediates the co-translational targeting of newly synthesized proteins to cellular membranes. The SRP RNA is a universally conserved component of SRP that mediates key interactions between two GTPases in SRP and its receptor, thus enabling rapid delivery of cargo to the target membrane. Notably, this essential RNA is bypassed in the chloroplast (cp) SRP of green plants. Previously, we showed that the cpSRP and cpSRP receptor GTPases (cpSRP54 and cpFtsY, respectively) interact efficiently by themselves without the SRP RNA. Here, we explore the molecular mechanism by which this is accomplished. Fluorescence analyses showed that, in the absence of SRP RNA, the M-domain of cpSRP54 both accelerates and stabilizes complex assembly between cpSRP54 and cpFtsY. Cross-linking coupled with mass spectrometry and mutational analyses identified a new interaction between complementarily charged residues on the cpFtsY G-domain and the vicinity of the cpSRP54 M-domain. These residues are specifically conserved in plastids, and their evolution coincides with the loss of SRP RNA in green plants. These results provide an example of how proteins replace the functions of RNA during evolution.
机译:信号识别颗粒(SRP)是必不可少的核糖核蛋白颗粒,可介导新合成蛋白对细胞膜的共翻译靶向。 SRP RNA是SRP的一个普遍保守的成分,它介导SRP中两个GTPases及其受体之间的关键相互作用,从而使货物快速递送至靶膜。值得注意的是,这种必需的RNA在绿色植物的叶绿体(cp)SRP中被绕过。以前,我们显示了cpSRP和cpSRP受体GTPases(分别为cpSRP54和cpFtsY)在没有SRP RNA的情况下可以有效地相互作用。在这里,我们探索完成这一过程的分子机制。荧光分析表明,在不存在SRP RNA的情况下,cpSRP54的M结构域既可以加速也可以稳定cpSRP54和cpFtsY之间的复杂装配。交联结合质谱和突变分析确定了cpFtsY G结构域和cpSRP54 M结构域附近的互补电荷残基之间的新相互作用。这些残基在质体中特别保守,它们的进化与绿色植物中SRP RNA的丢失相吻合。这些结果提供了蛋白质在进化过程中如何替代RNA功能的一个例子。

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