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The organization of engaged and quiescent translocons in the endoplasmic reticulum of mammalian cells

机译:哺乳动物细胞内质网中参与和静止的转座子的组织

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摘要

Protein translocons of the mammalian endoplasmic reticulum are composed of numerous functional components whose organization during different stages of the transport cycle in vivo remains poorly understood. We have developed generally applicable methods based on fluorescence resonance energy transfer (FRET) to probe the relative proximities of endogenously expressed translocon components in cells. Examination of substrate-engaged translocons revealed oligomeric assemblies of the Sec61 complex that were associated to varying degrees with other essential components including the signal recognition particle receptor TRAM and the TRAP complex. Remarkably, these components not only remained assembled but also had a similar, yet distinguishable, organization both during and after nascent chain translocation. The persistence of preassembled and complete translocons between successive rounds of transport may facilitate highly efficient translocation in vivo despite temporal constraints imposed by ongoing translation and a crowded cellular environment.
机译:哺乳动物内质网的蛋白转座子由许多功能组件组成,人们对其在体内运输周期的不同阶段的组织了解甚少。我们已经开发出了基于荧光共振能量转移(FRET)的普遍适用的方法,以探测细胞中内源表达的translocon组件的相对邻近度。底物接合的转座子的检查揭示了Sec61复合物的寡聚体,这些寡聚体在不同程度上与包括信号识别颗粒受体TRAM和TRAP复合物在内的其他重要成分相关。值得注意的是,这些组件不仅在新生链易位期间和之后仍保持组装状态,而且具有相似但可区分的组织。尽管正在进行的翻译和拥挤的细胞环境施加了时间上的限制,但在连续的运输回合之间,预组装的和完整的转座子的持久性可以促进体内的高效转运。

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