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Rotation of the head of the 30S ribosomal subunit during mRNA translocation

机译:mRNA易位期间30S核糖体亚基头部的旋转

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Elongation factor-G-catalyzed translocation of mRNA and tRNAs during protein synthesis involves large-scale conformational changes in the ribosome. Formation of hybrid-state intermediates is coupled to counterclockwise (forward) rotation of the body of the 30S sub-unit. Recent structural studies implicate intrasubunit rotation of the 30S head in translocation. Here, we observe rotation of the head during translocation in real time using ensemble stopped-flow FRET with ribosomes containing fluorescent probes attached to specific positions in the head and body of the 30S subunit. Our results allow ordering of the rates of movement of the 30S subunit body and head during translocation: body forward > head forward > head reverse ≥ body reverse. The rate of quenching of pyrene-labeled mRNA is consistent with coupling of mRNA translocation to head rotation.
机译:蛋白质合成过程中伸长因子-G催化的mRNA和tRNA易位涉及核糖体的大规模构象变化。混合态中间体的形成与30S子单元的主体的逆时针(正向)旋转有关。最近的结构研究表明30S头部易位内亚基旋转。在这里,我们使用集成的停流FRET和核糖体实时观察到移位过程中头部的旋转,该核糖体包含附着在30S亚基头部和身体特定位置的荧光探针。我们的结果可以对易位期间30S亚基身体和头部的运动速率进行排序:身体向前>头部向前>头部反向≥身体反向。 pyr标记的mRNA的淬灭速率与mRNA易位与头部旋转的偶联一致。

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