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Binding and Translocation of Termination Factor Rho Studied at the Single-Molecule Level

机译:在单分子水平上研究的终止因子ROO的结合和易位

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摘要

Rho termination factor is an essential hexameric helicase responsible for terminating 20–50% of all mRNA synthesis in E. coli. We used single- molecule force spectroscopy to investigate Rho-RNA binding interactions at the Rho- utilization (rut) site of the ? tR1 terminator. Our results are consistent with Rho complexes adopting two states, one that binds 57 ±2 nucleotides of RNA across all six of the Rho primary binding sites, and another that binds 85 ±2 nucleotides at the six primary sites plus a single secondary site situated at the center of the hexamer. The single-molecule data serve to establish that Rho translocates 5′-to-3′ towards RNA polymerase (RNAP) by a tethered-tracking mechanism, looping out the intervening RNA between the rut site and RNAP. These findings lead to a general model for Rho binding and translocation, and establish a novel experimental approach that should facilitate additional single- molecule studies of RNA-binding proteins.
机译:Rho终止因子是必不可少的六聚解旋酶,负责终止大肠杆菌中所有mRNA合成的20-50%。我们使用单分子力光谱法研究了位于β-末端的Rho-利用率(Rut)位点的Rho-RNA结合相互作用。 tR1终止子。我们的结果与采用两种状态的Rho复合物一致,一种状态跨所有Rho一级结合位点结合了57±2个核苷酸的RNA,另一种状态则在六个一级位点结合了一个位于85位±2个核苷酸的单态位点。六聚体的中心。单分子数据用于确定Rho通过束缚追踪机制将5'到3'朝向RNA聚合酶(RNAP)移位,从而在车辙位点和RNAP之间形成中间的RNA。这些发现导致了Rho结合和易位的通用模型,并建立了一种新颖的实验方法,该方法应有助于RNA结合蛋白的其他单分子研究。

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