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A structural ensemble of a ribosome-nascent chain complex during cotranslational protein folding

机译:共翻译蛋白折叠过程中核糖体-新生链复合物的结构整体

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摘要

Although detailed pictures of ribosome structures are emerging, little is known about the structural and cotranslational folding properties of nascent polypeptide chains at the atomic level. Here we used solution-state NMR spectroscopy to define a structural ensemble of a ribosome-nascent chain complex (RNC) formed during protein biosynthesis in Escherichia coli, in which a pair of immunoglobulin-like domains adopts a folded N-terminal domain (FLN5) and a disordered but compact C-terminal domain (FLN6). To study how FLN5 acquires its native structure cotranslationally, we progressively shortened the RNC constructs. We found that the ribosome modulates the folding process, because the complete sequence of FLN5 emerged well beyond the tunnel before acquiring native structure, whereas FLN5 in isolation folded spontaneously, even when truncated. This finding suggests that regulating structure acquisition during biosynthesis can reduce the probability of misfolding, particularly of homologous domains.
机译:尽管出现了核糖体结构的详细图片,但对于在原子水平上新生的多肽链的结构和共翻译折叠特性知之甚少。在这里,我们使用溶液状态NMR光谱来定义在大肠杆菌中蛋白质生物合成过程中形成的核糖体-新生链复合物(RNC)的结构整体,其中一对免疫球蛋白样结构域采用折叠的N末端结构域(FLN5)和无序但紧凑的C末端域(FLN6)。为了研究FLN5如何共翻译获得其天然结构,我们逐渐缩短了RNC的构建体。我们发现核糖体调节了折叠过程,因为FLN5的完整序列在获得天然结构之前就已经远远超出了隧道,而FLN5甚至在被截断时也会自发折叠。这一发现表明,在生物合成过程中调节结构的获得可以减少错误折叠的可能性,特别是同源结构域的错误折叠。

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