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Structure of trigger factor binding domain in biologically homologous complex with eubacterial ribosome reveals its chaperone action

机译:具有细菌核糖体的生物同源复合物中触发因子结合结构域的结构揭示了其伴侣作用

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摘要

Trigger factor (TF), the first chaperone in eubacteria to encounter the emerging nascent chain, binds to the large ribosomal subunit in the vicinity of the protein exit tunnel opening and forms a sheltered folding space. Here, we present the 3.5-angstrom crystal structure of the physiological complex of the large ribosomal subunit from the eubacterium Deinococcus radiodurans with the N-terminal domain of TF (TFa) from the same organism. For anchoring, TFa exploits a small ribosomal surface area in the vicinity of proteins L23 and L29, by using its "signature motif" as well as additional structural elements. The molecular details of TFa interactions reveal that L23 is essential for the association of TF with the ribosome and may serve as a channel of communication with the nascent chain progressing in the tunnel. L29 appears to induce a conformational change in TFa, which results in the exposure of TFa hydrophobic patches to the opening of the ribosomal exit tunnel, thus increasing its affinity for hydrophobic segments of the emerging nascent polypeptide. This observation implies that, in addition to creating a protected folding space for the emerging nascent chain, TF association with the ribosome prevents aggregation by providing a competing hydrophobic environment and may be critical for attaining the functional conformation necessary for chaperone activity.
机译:触发因子(TF)是真细菌中第一个遇到新兴链的伴侣,它与蛋白质出口通道开口附近的大核糖体亚基结合,并形成一个有遮盖的折叠空间。在这里,我们介绍了来自真核生物放射硬红球菌的大型核糖体亚基的生理复合物的3.5埃晶体结构,该生物体具有来自同一生物的TF(TFa)的N末端结构域。为了锚定,TFa通过使用蛋白质的L23和L29的“签名基序”以及其他结构元素,利用其较小的核糖体表面积。 TFa相互作用的分子细节表明,L23对于TF与核糖体的缔合是必不可少的,并可作为与隧道中新生链进展的沟通通道。 L29似乎诱导了TFa的构象变化,从而导致TFa疏水斑块暴露于核糖体出口通道的开口,从而增加了其对新兴新生多肽疏水片段的亲和力。该观察结果暗示,除了为新兴的新生链创建受保护的折叠空间外,TF与核糖体的缔合还通过提供竞争性疏水环境来防止聚集,并且对于获得伴侣活性所必需的功能构象可能至关重要。

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