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Real-time observation of signal recognition particle binding to actively translating ribosomes

机译:实时观察信号识别颗粒与主动翻译核糖体的结合

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摘要

The signal recognition particle (SRP) directs translating ribosome-nascent chain complexes (RNCs) that display a signal sequence to protein translocation channels in target membranes. All previous work on the initial step of the targeting reaction, when SRP binds to RNCs, used stalled and non-translating RNCs. This meant that an important dimension of the co-translational process remained unstudied. We apply single-molecule fluorescence measurements to observe directly and in real-time E. coli SRP binding to actively translating RNCs. We show at physiologically relevant SRP concentrations that SRP-RNC association and dissociation rates depend on nascent chain length and the exposure of a functional signal sequence outside the ribosome. Our results resolve a long-standing question: how can a limited, sub-stoichiometric pool of cellular SRP effectively distinguish RNCs displaying a signal sequence from those that are not? The answer is strikingly simple: as originally proposed, SRP only stably engages translating RNCs exposing a functional signal sequence.>DOI:
机译:信号识别颗粒(SRP)将显示信号序列的核糖体-新生链复合物(RNC)定向到目标膜中的蛋白易位通道。当SRP绑定到RNC时,以前所有有关靶向反应初始步骤的工作都使用了停滞的和非翻译的RNC。这意味着共翻译过程的重要方面尚未研究。我们应用单分子荧光测量来直接和实时观察E.coli SRP与主动翻译的RNC的结合。我们在生理上相关的SRP浓度下显示SRP-RNC缔合和解离速率取决于新生链长度和核糖体外部功能信号序列的暴露。我们的结果解决了一个长期存在的问题:有限的亚化学计量的细胞SRP池如何有效区分显示信号序列的RNC和未显示信号序列的RNC?答案非常简单:如最初提出的那样,SRP仅稳定地与暴露了功能性信号序列的翻译RNC接合。> DOI:

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