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Binding properties of YjeQ (RsgA) RbfA RimM and Era to assembly intermediates of the 30S subunit

机译:YjeQ(RsgA)RbfARimM和Era与30S亚基组装中间体的结合特性

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摘要

Our understanding regarding the function of YjeQ (also called RsgA), RbfA, RimM and Era in ribosome biogenesis has been derived in part from the study of immature 30S particles that accumulate in null strains lacking one of these factors. However, their mechanistic details are still unknown. Here, we demonstrate that these immature particles are not dead-end products of assembly, but progress into mature 30S subunits. Mass spectrometry analysis revealed that in vivo the occupancy level of these factors in these immature 30S particles is below 10% and that the concentration of factors does not increase when immature particles accumulate in cells. We measured by microscale thermophoresis that YjeQ and Era binds to the mature 30S subunit with high affinity. However, the binding affinity of these factors to the immature particles and of RimM and RbfA to mature or immature particles was weak, suggesting that binding is not occurring at physiological concentrations. These results suggest that in the absence of these factors, the immature particles evolve into a thermodynamically stable intermediate that exhibits low affinity for the assembly factors. These results imply that the true substrates of YjeQ, RbfA, RimM and Era are immature particles that precede the ribosomal particles accumulating in the knockouts strains.
机译:我们对YjeQ(也称为RsgA),RbfA,RimM和Era在核糖体生物发生中的功能的了解部分源自对未成熟30S颗粒的研究,这些颗粒在缺乏这些因素之一的无效菌株中积累。但是,它们的机械细节仍然未知。在这里,我们证明了这些未成熟的颗粒不是组装的最终产物,而是发展成为成熟的30S亚基。质谱分析表明,这些未成熟的30S颗粒在体内这些因子的占有水平低于10%,并且当未成熟的颗粒在细胞中积累时,这些因子的浓度不会增加。我们通过微型热泳测量,YjeQ和时代结合到成熟的30S亚基具有高亲和力。但是,这些因子与未成熟颗粒以及RimM和RbfA与成熟或未成熟颗粒的结合亲和力很弱,这表明在生理浓度下不会发生结合。这些结果表明,在没有这些因素的情况下,未成熟的颗粒会演变成对组装因子表现出低亲和力的热力学稳定的中间体。这些结果暗示YjeQ,RbfA,RimM和Era的真实底物是未成熟的颗粒,先于在敲除菌株中积累的核糖体颗粒。

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