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Common chaperone activity in the G-domain of trGTPase protects L11-L12 interaction on the ribosome

机译:trGTPase G结构域中的常见伴侣活性可保护核糖体上的L11-L12相互作用

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摘要

Translational GTPases (trGTPases) regulate all phases of protein synthesis. An early event in the interaction of a trGTPase with the ribosome is the contact of the G-domain with the C-terminal domain (CTD) of ribosomal protein L12 (L12-CTD) and subsequently interacts with the N-terminal domain of L11 (L11-NTD). However, the structural and functional relationships between L12-CTD and L11-NTD remain unclear. Here, we performed mutagenesis, biochemical and structural studies to identify the interactions between L11-NTD and L12-CTD. Mutagenesis of conserved residues in the interaction site revealed their role in the docking of trGTPases. During docking, loop62 of L11-NTD protrudes into a cleft in L12-CTD, leading to an open conformation of this domain and exposure of hydrophobic core. This unfavorable situation for L12-CTD stability is resolved by a chaperone-like activity of the contacting G-domain. Our results suggest that all trGTPases-regardless of their different specific functions-use a common mechanism for stabilizing the L11-NTD.L12-CTD interactions.
机译:翻译型GTPases(trGTPases)调节蛋白质合成的所有阶段。 trGTPase与核糖体相互作用的早期事件是G结构域与核糖体蛋白L12(L12-CTD)的C末端结构域(CTD)接触,随后与L11的N末端结构域相互作用( L11-NTD)。但是,L12-CTD和L11-NTD之间的结构和功能关系仍然不清楚。在这里,我们进行了诱变,生化和结构研究,以确定L11-NTD和L12-CTD之间的相互作用。相互作用位点中保守残基的诱变揭示了它们在trGTPase停靠中的作用。在对接过程中,L11-NTD的loop62突入L12-CTD的缝隙中,导致该结构域的开放构象和疏水核心的暴露。 L12-CTD稳定性的这种不利情况通过接触的G结构域的伴侣状活性得以解决。我们的结果表明,所有trGTP酶,无论其不同的特定功能如何,均使用稳定L11-NTD.L12-CTD相互作用的通用机制。

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