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首页> 外文期刊>Biochemical and Biophysical Research Communications >Involvement of ribosomal protein L6 in assembly of functional 50S ribosomal subunit in Escherichia coli cells
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Involvement of ribosomal protein L6 in assembly of functional 50S ribosomal subunit in Escherichia coli cells

机译:核糖体蛋白L6在大肠杆菌细胞中核糖核糖体亚基组装中的参与

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摘要

Ribosomal protein L6, an essential component of the large (50S) subunit, primarily binds to helix 97 of 23S rRNA and locates near the sarcin/ricin loop of helix 95 that directly interacts with GTPase translation factors. Although L6 is believed to play important roles in factor-dependent ribosomal function, crucial biochemical evidence for this hypothesis has not been obtained. We constructed and characterized an Escherichia coli mutant bearing a chromosomal L6 gene (TIE) disruption and carrying a plasmid with an arabinose-inducible L6 gene. Although this AL6 mutant grew more slowly than its wild-type parent, it proliferated in the presence of arabinose. Interestingly, cell growth in the absence of arabinose was biphasic. Early growth lasted only a few generations (LI-phase) and was followed by a suspension of growth for several hours (S-phase). This suspension was followed by a second growth phase (LII-phase). Cells harvested at both LI- and S-phases contained ribosomes with reduced factor -dependent GTPase activity and accumulated 50S subunit precursors (45S particles). The 45S particles completely lacked L6. Complete 50S subunits containing L6 were observed in all growth phases regardless of the L6-depleted condition, implying that the Delta L6 mutant escaped death because of a leaky expression of L6 from the complementing plasmid. We conclude that L6 is essential for the assembly of functional 50S subunits at the late stage. We thus established conditions for the isolation of L6 -depleted 50S subunits, which are essential to study the role of L6 in translation. (C) 2016 Elsevier Inc. All rights reserved.
机译:核糖体蛋白L6,大(50秒)亚基的必需组分,主要与23s rRNA的螺旋97结合,并位于螺旋95的Sarcin / ricin环附近,所述螺旋95与GTP酶平移因子直接相互作用。虽然L6被认为在因子依赖性核糖体功能中发挥重要作用,但尚未获得该假设的重要生物化学证据。我们构建并表征了含有染色体L6基因(系带)破坏并携带具有阿拉伯糖诱导的L6基因的质粒的大肠杆菌突变体。虽然该Al6突变体比其野生型父母慢得多,但它在阿拉伯糖存在下增殖。有趣的是,没有阿拉伯糖的细胞生长是双相的。早期生长持续了几代(LI相),然后暂停生长几个小时(S阶段)。该悬浮液之后是第二生长阶段(LII相)。在LI-和S阶段收获的细胞含有减少因子依赖性GTP酶活性的核糖体,并积累了50s亚基前体(45s颗粒)。 45s颗粒完全缺少L6。无论L6耗尽条件如何,在所有生长相中观察到含有L6的50s亚单元,这意味着ΔL6突变体因来自补体质粒的L6的泄漏表达而被逸出死亡。我们得出结论,L6在晚期的功能50s亚基组装是必不可少的。因此,我们确定了L6 -dpleted 50s亚基的分离的条件,这对于研究L6在翻译中的作用至关重要。 (c)2016年Elsevier Inc.保留所有权利。

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