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Differential effects of ribosomal proteins and Mg2+ ions on a conformational switch during 30S ribosome 5 '-domain assembly

机译:核糖体蛋白和Mg2 +离子对30S核糖体5'域组装过程中构象转换的差异作用

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摘要

Ribosomal protein S4 nucleates assembly of the 30S ribosome 5' and central domains, which is crucial for the survival of cells. Protein S4 changes the structure of its 16S rRNA binding site, passing through a non-native intermediate complex before forming native S4-rRNA contacts. Ensemble FRET was used to measure the thermodynamic stability of non-native and native S4 complexes in the presence of Mg2+ ions and other 5'-domain proteins. Equilibrium titrations of Cy3-labeled 5'-domain RNA with Cy5-labeled protein S4 showed that Mg2+ ions preferentially stabilize the native S4-rRNA complex. In contrast, ribosomal proteins 520 and S16 act by destabilizing the non-native S4-rRNA complex. The full cooperative switch to the native complex requires S4, 516, and S20 and is achieved to a lesser degree by 54 and S16. The resulting thermodynamic model for assembly of the 30S body illustrates how ribosomal proteins selectively bias the equilibrium between alternative rRNA conformations, increasing the cooperativity of rRNA folding beyond what can be achieved by Mg2+ ions alone.
机译:核糖体蛋白S4使30S核糖体5'和中央结构域的组装成核,这对细胞存活至关重要。蛋白质S4会在形成天然S4-rRNA接触之前穿过非天然中间复合物,从而改变其16S rRNA结合位点的结构。集成式FRET用于在Mg2 +离子和其他5'域蛋白存在的情况下测量非天然和天然S4复合物的热力学稳定性。 Cy3标记的5'结构域RNA与Cy5标记的蛋白S4的平衡滴定表明,Mg2 +离子优先稳定天然S4-rRNA复合物。相反,核糖体蛋白520和S16通过使非天然S4-rRNA复合物不稳定来起作用。完全协作切换到本机复合体需要S4、516和S20,并且通过54和S16在较小程度上实现。由此产生的用于组装30S体的热力学模型说明了核糖体蛋白如何选择性地偏向替代性rRNA构象之间的平衡,从而增加了rRNA折叠的协同作用,超出了仅由Mg2 +离子所能达到的范围。

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