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蛋白质解开假结:S1 介导的 RNA 高级结构的展开。

Protein unties the pseudoknot: S1-mediated unfolding of RNA higher order structure.

机构信息

Single Molecule Analysis Group, Department of Chemistry, University of Michigan, Ann Arbor, MI, USA.

Center for RNA Biomedicine, University of Michigan, Ann Arbor, MI, USA.

出版信息

Nucleic Acids Res. 2020 Feb 28;48(4):2107-2125. doi: 10.1093/nar/gkz1166.

Abstract

Ribosomal protein S1 plays important roles in the translation initiation step of many Escherichia coli mRNAs, particularly those with weak Shine-Dalgarno sequences or structured 5' UTRs, in addition to a variety of cellular processes beyond the ribosome. In all cases, the RNA-binding activity of S1 is a central feature of its function. While sequence determinants of S1 affinity and many elements of the interactions of S1 with simple secondary structures are known, mechanistic details of the protein's interactions with RNAs of more complex secondary and tertiary structure are less understood. Here, we investigate the interaction of S1 with the well-characterized H-type pseudoknot of a class-I translational preQ1 riboswitch as a highly structured RNA model whose conformation and structural dynamics can be tuned by the addition of ligands of varying binding affinity, particularly preQ1, guanine, and 2,6-diaminopurine. Combining biochemical and single molecule fluorescence approaches, we show that S1 preferentially interacts with the less folded form of the pseudoknot and promotes a dynamic, partially unfolded conformation. The ability of S1 to unfold the RNA is inversely correlated with the structural stability of the pseudoknot. These mechanistic insights delineate the scope and limitations of S1-chaperoned unfolding of structured RNAs.

摘要

核糖体蛋白 S1 在许多大肠杆菌 mRNA 的翻译起始步骤中发挥重要作用,特别是那些具有较弱的 Shine-Dalgarno 序列或结构 5'UTR 的 mRNA,以及核糖体以外的各种细胞过程。在所有情况下,S1 的 RNA 结合活性都是其功能的核心特征。虽然 S1 亲和力的序列决定因素以及 S1 与简单二级结构相互作用的许多要素已经为人所知,但 S1 与更复杂二级和三级结构的 RNA 相互作用的机制细节了解较少。在这里,我们研究了 S1 与一类 I 翻译前 Q1 核糖体开关的典型 H 型假结的相互作用,作为一个高度结构化的 RNA 模型,其构象和结构动力学可以通过添加具有不同结合亲和力的配体来调节,特别是前 Q1、鸟嘌呤和 2,6-二氨基嘌呤。结合生化和单分子荧光方法,我们表明 S1 优先与假结的折叠程度较低的形式相互作用,并促进动态的、部分展开的构象。S1 使 RNA 展开的能力与假结的结构稳定性呈负相关。这些机制上的见解描绘了 S1 介导的结构 RNA解折叠的范围和局限性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6546/7038950/1059c553086c/gkz1166fig1.jpg

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