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首页> 外文期刊>Journal of Molecular Biology >Recycling of Aborted Ribosomal 50S Subunit-Nascent Chain-tRNA Complexes by the Heat Shock Protein Hsp15.
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Recycling of Aborted Ribosomal 50S Subunit-Nascent Chain-tRNA Complexes by the Heat Shock Protein Hsp15.

机译:热休克蛋白Hsp15回收中止的核糖体50S亚基-新生链-tRNA复合物。

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摘要

When heat shock prematurely dissociates a translating bacterial ribosome, its 50S subunit is prevented from reinitiating protein synthesis by tRNA covalently linked to the unfinished protein chain that remains threaded through the exit tunnel. Hsp15, a highly upregulated bacterial heat shock protein, reactivates such dead-end complexes. Here, we show with cryo-electron microscopy reconstructions and functional assays that Hsp15 translocates the tRNA moiety from the A site to the P site of stalled 50S subunits. By stabilizing the tRNA in the P site, Hsp15 indirectly frees up the A site, allowing a release factor to land there and cleave off the tRNA. Such a release factor must be stop codon independent, suggesting a possible role for a poorly characterized class of putative release factors that are upregulated by cellular stress, lack a codon recognition domain and are conserved in eukaryotes.
机译:当热激过早地使翻译的细菌核糖体解离时,通过共价连接到未加工的蛋白质链的tRNA阻止其50S亚基重新启动蛋白质合成,该蛋白质链仍然穿过出口通道。 Hsp15是一种高度上调的细菌热激蛋白,可重新激活这种末端复合物。在这里,我们用冷冻电子显微镜重建和功能分析表明Hsp15将tRNA部分从停滞的50S亚基的A位点转移到P位点。通过稳定P位点中的tRNA,Hsp15间接释放A位点,从而使释放因子到达该位点并切下tRNA。这样的释放因子必须是独立于终止密码子的,这暗示了可能因细胞应激而上调,缺乏密码子识别结构域且在真核生物中保守的特征较弱的推定释放因子的作用。

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