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核糖体复合物分级组装过程中蛋白质偶联RNA动力学的演变

Evolution of protein-coupled RNA dynamics during hierarchical assembly of ribosomal complexes.

作者信息

Abeysirigunawardena Sanjaya C, Kim Hajin, Lai Jonathan, Ragunathan Kaushik, Rappé Mollie C, Luthey-Schulten Zaida, Ha Taekjip, Woodson Sarah A

机构信息

T.C. Jenkins Department of Biophysics, Johns Hopkins University, 3400 N. Charles St., Baltimore, MD, 21218, USA.

Department of Chemistry and Biochemistry, Kent State University, Kent, OH, 44242, USA.

出版信息

Nat Commun. 2017 Sep 8;8(1):492. doi: 10.1038/s41467-017-00536-1.

Abstract

Assembly of 30S ribosomes involves the hierarchical addition of ribosomal proteins that progressively stabilize the folded 16S rRNA. Here, we use three-color single molecule FRET to show how combinations of ribosomal proteins uS4, uS17 and bS20 in the 16S 5' domain enable the recruitment of protein bS16, the next protein to join the complex. Analysis of real-time bS16 binding events shows that bS16 binds both native and non-native forms of the rRNA. The native rRNA conformation is increasingly favored after bS16 binds, explaining how bS16 drives later steps of 30S assembly. Chemical footprinting and molecular dynamics simulations show that each ribosomal protein switches the 16S conformation and dampens fluctuations at the interface between rRNA subdomains where bS16 binds. The results suggest that specific protein-induced changes in the rRNA dynamics underlie the hierarchy of 30S assembly and simplify the search for the native ribosome structure.Ribosomes assemble through the hierarchical addition of proteins to a ribosomal RNA scaffold. Here the authors use three-color single-molecule FRET to show how the dynamics of the rRNA dictate the order in which multiple proteins assemble on the 5' domain of the E. coli 16S rRNA.

摘要

30S核糖体的组装涉及核糖体蛋白的分层添加,这些蛋白逐步稳定折叠的16S rRNA。在这里,我们使用三色单分子荧光共振能量转移来展示核糖体蛋白uS4、uS17和bS20在16S 5'结构域中的组合如何促使下一个要加入复合物的蛋白bS16的募集。对实时bS16结合事件的分析表明,bS16既能结合rRNA的天然形式,也能结合非天然形式。bS16结合后,天然rRNA构象越来越受青睐,这解释了bS16如何驱动30S组装的后续步骤。化学足迹法和分子动力学模拟表明,每种核糖体蛋白都会改变16S构象,并抑制bS16结合的rRNA亚结构域之间界面处的波动。结果表明,rRNA动力学中特定的蛋白质诱导变化是30S组装层次结构的基础,并简化了对天然核糖体结构的搜索。核糖体通过将蛋白质分层添加到核糖体RNA支架上来进行组装。在这里,作者使用三色单分子荧光共振能量转移来展示rRNA的动力学如何决定多种蛋白质在大肠杆菌16S rRNA 5'结构域上组装的顺序。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/32ed/5591316/d609c19e0ad4/41467_2017_536_Fig1_HTML.jpg

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