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The structure of Escherichia coli signal recognition particle revealed by scanning transmission electron microscopy

机译:扫描电镜观察大肠杆菌信号识别颗粒的结构

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Structural studies on various domains of the ribonucleoprotein signal recognition particle (SRP) have not converged on a single complete structure of bacterial SRP consistent with the biochemistry of the particle. We obtained a three-dimensional structure for Escherichia coli SRP by cryoscanning transmission electron microscopy and mapped the internal RNA by electron spectroscopic imaging. Crystallographic data were fit into the SRP reconstruction, and although the resulting model differed from previous models, they could be rationalized by movement through an interdomain linker of Ffh, the protein component of SRP. Fluorescence resonance energy transfer experiments determined interdomain distances that were consistent with our model of SRP. Docking our model onto the bacterial ribosome suggests a mechanism for signal recognition involving interdomain movement of Ffh into and out of the nascent chain exit site and suggests how SRP could interact and/or compete with the ribosome-bound chaperone, trigger factor, for a nascent chain during translation.
机译:对核糖核蛋白信号识别颗粒(SRP)各个域的结构研究尚未收敛于与该颗粒的生物化学一致的细菌SRP的单个完整结构。我们通过低温扫描透射电子显微镜获得了大肠杆菌SRP的三维结构,并通过电子光谱成像绘制了内部RNA。晶体学数据适合SRP重建,尽管生成的模型与以前的模型有所不同,但可以通过移动SRP的蛋白质成分Ffh的域间接头来使它们合理化。荧光共振能量转移实验确定的域间距离与我们的SRP模型一致。将我们的模型对接到细菌核糖体上,提出了一种信号识别机制,涉及Ffh进入和离开新生链出口位点的域间移动,并提出SRP如何与核糖体结合的伴侣分子(触发因子)相互作用和/或竞争。翻译过程中的链条。

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