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HflX is a ribosome-splitting factor rescuing stalled ribosomes under stress conditions

机译:HflX是一种核糖体分裂因子,可在压力条件下拯救停滞的核糖体

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摘要

Adverse cellular conditions often lead to nonproductive translational stalling and arrest of ribosomes on mRNAs. Here, we used fast kinetics and cryo-EM to characterize Escherichia coil HflX, a GTPase with unknown function. Our data reveal that HflX is a heat shock-induced ribosome-splitting factor capable of dissociating vacant as well as mRNA-associated ribosomes with deacylated tRNA in the peptidyl site. Structural data demonstrate that the N-terminal effector domain of HflX binds to the peptidyl transferase center in a strikingly similar manner as that of the class I release factors and induces dramatic conformational changes in central intersubunit bridges, thus promoting subunit dissociation. Accordingly, loss of HflX results in an increase in stalled ribosomes upon heat shock, These results suggest a primary role of HflX in rescuing translationally arrested ribosomes under stress conditions.
机译:不利的细胞状况通常导致非生产性翻译停滞和核糖体在mRNA上的滞留。在这里,我们使用快速动力学和cryo-EM来表征大肠杆菌线圈HflX,一种功能未知的GTPase。我们的数据表明,HflX是热休克诱导的核糖体分裂因子,能够将空位以及与mRNA相关的核糖体与肽基位点中的脱酰基tRNA分离。结构数据表明,HflX的N末端效应结构域以与I类释放因子极为相似的方式与肽基转移酶中心结合,并在中央亚基中间桥中引起显着的构象变化,从而促进了亚基解离。因此,HflX的丧失导致热休克后停滞的核糖体增加。这些结果表明,HflX在挽救应激条件下翻译停滞的核糖体中起主要作用。

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