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In vivo selection of functional ribosomes with variations in the rRNA-bindinq site of Escherichia coli ribosomal protein S8: Evolutionary implications

机译:体内选择功能核糖体的大肠杆菌核糖体蛋白S8的rRNA-bindinq位点发生变化:进化意义

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The highly conserved nature of rRNA sequences throughout evo- lution allows these molecules to be used to build philogenic trees of different species. It is unknown whether the stability of specific interactions and structural features of rRNA reflects an optimal adaptation to a functional task or an evolutionary trap. In the work reported here. we have applied an in vivo selection strategy to demonstrate that unnatural sequences do work as a functional replacement of the highly conserved binding site of ribosomal protein S8. However. growth competition experiments performed between Escherichia coli isolates containing natural and unnatural S8-binding sites showed that the fate of each isolate depended on the growth condition. In exponentially growing cells, one unnat- ural variant was found to be equivalent to wild type in competition experiments performed in rich media. In culture conditions leading to slow growth, however, cells containing the wild-type sequence were the ultimate winner of the competition, emphasizing that the wild-type sequence is. in fact. the most fit solution for the S8-binding site.
机译:在整个进化过程中,rRNA序列的高度保守性使得这些分子可用于构建不同物种的亲缘树。 rRNA特异性相互作用和结构特征的稳定性是否能反映对功能性任务或进化陷阱的最佳适应性尚不清楚。在这里报道了工作。我们已经应用了体内选择策略来证明非天然序列确实可以作为核糖体蛋白S8高度保守结合位点的功能替代。然而。在含有天然和非天然S8结合位点的大肠杆菌分离株之间进行的生长竞争实验表明,每种分离株的命运取决于生长条件。在呈指数增长的细胞中,在丰富培养基中进行的竞争实验中,发现一种非自然变体与野生型相同。然而,在导致生长缓慢的培养条件下,含有野生型序列的细胞是竞争的最终赢家,强调了野生型序列是。事实上。最适合S8结合位点的解决方案。

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