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Interaction strengths between the ribosome and tRNA at various steps of translocation.

机译:在易位的各个步骤,核糖体与tRNA之间的相互作用强度。

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摘要

Transfer RNA (tRNA) translocates inside the ribosome during translation. We studied the interaction strengths between the ribosome and tRNA at various stages of translocation. We utilized an optical trap to measure the mechanical force to rupture tRNA from the ribosome. We measured the rupture forces of aminoacyl tRNA or peptidyl tRNA mimic from the ribosome in a prepeptidyl transfer state, the pretranslocational state, and the posttranslocational state. In addition, we measured the interaction strength between the ribosome and aminoacyl-tRNA in presence of viomycin. Based on the interaction strengths between the ribosome and tRNA under these conditions, 1), we concluded that tRNA interaction with the 30S subunit is far more important than the interaction with the 50S subunit in the mechanism of translocation; and 2), we propose a mechanism of translocation where the ribosomal ratchet motion, with the aid of EF-G, drives tRNA translocation.
机译:在翻译过程中,转移RNA(tRNA)在核糖体内转移。我们研究了核糖体和tRNA在易位的各个阶段之间的相互作用强度。我们利用光阱来测量从核糖体中断裂tRNA的机械力。我们测量了核糖体在前肽基转移状态,易位前状态和后易位状态下模拟的氨酰基tRNA或肽基tRNA的断裂力。此外,我们测量了在存在霉素的情况下核糖体与氨酰基-tRNA之间的相互作用强度。基于在这些条件下核糖体与tRNA之间的相互作用强度,1),我们得出结论,在转运机制中,tRNA与30S亚基的相互作用远比与50S亚基的相互作用重要。和2),我们提出了一种易位机制,其中核糖体棘轮运动借助EF-G驱动tRNA易位。

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