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Dynamic Behavior of Trigger Factor on the Ribosome

机译:触发因子在核糖体上的动态行为

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Trigger factor (TF) is the only ribosome-associated chaperone in bacteria. It interacts with hydrophobic segments in nascent chain (NCs) as they emerge from the ribosome. TF binds via its N-terminal ribosome-binding domain (RBD) mainly to ribosomal protein uL23 at the tunnel exit on the large ribosomal subunit. Whereas earlier structural data suggested that TF binds as a rigid molecule to the ribosome, recent comparisons of structural data on substrate-bound, ribosome-bound, and TF in solution from different species suggest that this chaperone is a rather flexible molecule. Here, we present two cryo-electron microscopy structures of TF bound to ribosomes translating an mRNA coding for a known TF substrate from Escherichia coli of a different length. The structures reveal distinct degrees of flexibility for the different TF domains, a conformational rearrangement of the RBD upon ribosome binding, and an increase in rigidity within TF when the NC is extended. Molecular dynamics simulations agree with these data and offer a molecular basis for these observations. (C) 2016 Elsevier Ltd. All rights reserved.
机译:触发因子(TF)是细菌中唯一与核糖体相关的伴侣。当它们从核糖体中出现时,它与新生链(NCs)中的疏水链段相互作用。 TF通过其N端核糖体结合结构域(RBD)在大核糖体亚基的隧道出口处主要与核糖体蛋白uL23结合。早期的结构数据表明TF是作为刚性分子与核糖体结合的,而最近对不同物种溶液中底物结合的,核糖体结合的和TF的结构数据进行的比较表明,这种分子伴侣是一种相当灵活的分子。在这里,我们介绍结合到核糖体的TF的两个低温电子显微镜结构,该核糖体翻译了编码不同长度的大肠杆菌中已知TF底物的mRNA。该结构揭示了不同TF域的不同程度的柔性,核糖体结合后RBD的构象重排以及NC扩展时TF内刚性的增加。分子动力学模拟与这些数据一致,并为这些观察提供了分子基础。 (C)2016 Elsevier Ltd.保留所有权利。

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