首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >A Signal-anchor Sequence Stimulates Signal Recognition Particle Binding To Ribosomes From Inside The Exit Tunnel
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A Signal-anchor Sequence Stimulates Signal Recognition Particle Binding To Ribosomes From Inside The Exit Tunnel

机译:信号锚序列从出口隧道内部刺激信号识别颗粒与核糖体的结合。

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Sorting of eukaryotic membrane and secretory proteins depends on recognition of ribosome-bound nascent chain signal sequences by the signal recognition particle (SRP). The current model suggests that the SRP cycle is initiated when a signal sequence emerges from the ribosomal tunnel and binds to SRP. Then elongation is slowed until the SRP-bound ribosome-nascent chain complex (RNC) is targeted to the SRP receptor in the endoplasmic reticulum (ER) membrane. The RNC is then transferred to the translocon, SRP is released, and translation resumes. Because RNCs do not target to the translocon efficiently if nascent chains become too long, the window for SRP to identify its substrates is short. We now show that a transmembrane signal-anchor sequence (SA) significantly enhances binding of SRP to RNCs even before the SA emerges from the ribosomal tunnel. In this mode, SRP does not contact the SA directly but is in close proximity to the portion of the nascent polypeptide that has already left the ribosomal tunnel. Early recruitment of SRP provides a mechanism to expand the window for substrate identification. We suggest that the dynamics of the SRP-ribosome interaction is affected not only by the direct binding of SRP to an exposed signal sequence but also by properties of the translating ribosome that are triggered from within the tunnel.
机译:真核膜和分泌蛋白的分类取决于信号识别颗粒(SRP)对核糖体结合的新生链信号序列的识别。当前模型表明,当信号序列从核糖体通道中出现并与SRP结合时,SRP周期就开始了。然后减慢伸长,直到结合SRP的核糖体-新生链复合物(RNC)靶向内质网(ER)膜中的SRP受体。然后将RNC转移到转位,释放SRP,然后恢复翻译。因为如果新生链变得太长,RNC不会有效地靶向易位子,因此SRP识别其底物的窗口很短。我们现在显示,跨膜信号锚序列(SA)显着增强SRP与RNC的结合,甚至在SA从核糖体隧道出现之前也是如此。在这种模式下,SRP不直接与SA接触,而是与刚离开核糖体通道的新生多肽部分紧密接触。 SRP的早期募集提供了扩大底物鉴定窗口的机制。我们建议SRP核糖体相互作用的动力学不仅受SRP与暴露信号序列的直接结合影响,而且还受隧道内触发的翻译核糖体特性的影响。

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