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Structural Basis for the Rescue of Stalled Ribosomes: Structure of YaeJ Bound to the Ribosome

机译:对于失速核糖体的救援结构基础:绑定到核糖体YaeJ结构

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摘要

In bacteria, the hybrid transfer-messenger RNA (tmRNA) rescues ribosomes stalled on defective messenger RNAs (mRNAs). However, certain gram-negative bacteria have evolved proteins that are capable of rescuing stalled ribosomes in a tmRNA-independent manner. Here, we report a 3.2 angstrom–resolution crystal structure of the rescue factor YaeJ bound to the Thermus thermophilus 70S ribosome in complex with the initiator tRNAifMet and a short mRNA. The structure reveals that the C-terminal tail of YaeJ functions as a sensor to discriminate between stalled and actively translating ribosomes by binding in the mRNA entry channel downstream of the A site between the head and shoulder of the 30S subunit. This allows the N-terminal globular domain to sample different conformations, so that its conserved GGQ motif is optimally positioned to catalyze the hydrolysis of peptidyl-tRNA. This structure gives insights into the mechanism of YaeJ function and provides a basis for understanding how it rescues stalled ribosomes.
机译:在细菌中,杂交转移 - 信使RNA(TMRNA)拯救在有缺陷的信使RNA(MRNA)上停滞的核糖体。然而,某些革兰氏阴性细菌具有进化的蛋白质,其能够以TMRNA - 无关的方式振荡被停滞的核糖体。这里,我们报告了与引发剂Trnai Fimmet和短mRN络合物中的救援因子Yaej的救援因子Yaej的救援因子Yaej的升温晶体结构。该结构揭示了YAEJ的C末端尾部用作传感器,以通过在30S亚基的头部和肩部之间的部位下游的MRNA进入通道中结合来区分停滞和主动平移的核糖体。这允许N末端球状域采样不同的构象,从而最佳地定位其保守的GGQ基序以催化肽基-CRNA的水解。这种结构对YAEJ功能的机制提供了深入的识别,并为理解它如何拯救被停滞的核糖体提供了依据。

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