Nanobiophysics, ESPCI Paris, 75005 Paris, France.
Expression Génétique Microbienne, UMR8261 CNRS/Université Paris 7, IBPC, 75005 Paris, France
RNA. 2019 Apr;25(4):472-480. doi: 10.1261/rna.067504.118. Epub 2019 Jan 31.
In vitro reconstitution studies have shown that ribosome assembly is highly cooperative and starts with the binding of a few ribosomal (r-) proteins to rRNA. It is unknown how these early binders act. Focusing on the initial stage of the assembly of the large subunit of the ribosome, we prepared a 79-nucleotide-long region of 23S rRNA encompassing the binding sites of the early binders uL4 and uL24. Force signals were measured in a DNA/RNA dumbbell configuration with a double optical tweezers setup. The rRNA fragment was stretched until unfolded, in the absence or in the presence of the r-proteins (either uL4, uL24, or both). We show that the r-proteins uL4 and uL24 individually stabilize the rRNA fragment, both acting as molecular clamps. Interestingly, this mechanical stabilization is enhanced when both proteins are bound simultaneously. Independently, we observe a cooperative binding of uL4 and uL24 to the rRNA fragment. These two aspects of r-proteins binding both contribute to the efficient stabilization of the 3D structure of the rRNA fragment under investigation. We finally consider implications of our results for large ribosomal subunit assembly.
体外重建研究表明,核糖体组装是高度协作的,首先是一些核糖体(r-)蛋白与 rRNA 结合。目前尚不清楚这些早期结合蛋白的作用机制。本研究聚焦于核糖体大亚基组装的初始阶段,我们制备了一段长 79 个核苷酸的 23S rRNA 片段,该片段包含早期结合蛋白 uL4 和 uL24 的结合位点。采用双光镊装置,在 DNA/RNA 哑铃构型中测量力信号。在不存在或存在 r 蛋白(uL4、uL24 或两者都有)的情况下,将 rRNA 片段拉伸至解链。结果表明,r 蛋白 uL4 和 uL24 可单独稳定 rRNA 片段,两者均作为分子夹。有趣的是,当两种蛋白同时结合时,这种机械稳定性会增强。独立地,我们观察到 uL4 和 uL24 与 rRNA 片段的协同结合。r 蛋白结合的这两个方面都有助于研究中 rRNA 片段的 3D 结构的有效稳定。最后,我们考虑了我们的结果对核糖体大亚基组装的影响。