Grunseich Sabrina G, Strobel Scott A
Department of Chemistry, Yale University, New Haven, CT 06511, United States.
Institute of Biomolecular Design and Discovery, West Haven, CT 06516, United States.
Nucleic Acids Res. 2025 May 22;53(10). doi: 10.1093/nar/gkaf445.
The cricket paralysis virus (CrPV) intergenic region internal ribosome entry site (IRES) binds to the ribosome without the need for any initiation factors. Their length, simple mechanism, and ability to function in diverse cell-free systems make CrPV-like IRESs useful tools to study the mechanism of translation and to express proteins. We report the use of a RelE-based next-generation sequencing method, termed SMARTI (sequencing-based mutational analysis of RNA translation initiation), to quantitatively determine the function of over 81 000 single and double mutants of CrPV IRES. The result is a comprehensive mutational database that serves as a consensus sequence-like analysis of IRES function. We have given particular attention to the sequence requirements within the three pseudoknots of the IRES element. The data indicate that each pseudoknot contains positions that are modifiable and mutation may even enhance IRES function through pseudotranslocation. CrPV IRES must balance being stable and dynamic as it forms the structure and ribosomal contacts required for translation initiation. Helical regions, especially in the transfer RNA-mimicking domain, are areas where flexibility may be especially beneficial. Moreover, we demonstrated that this high-throughput method is compatible with eukaryotic extract, providing an avenue for studying diverse eukaryotic RNA elements and for engineering sequences for protein expression.
蟋蟀麻痹病毒(CrPV)基因间区域内部核糖体进入位点(IRES)无需任何起始因子即可与核糖体结合。其长度、简单机制以及在多种无细胞系统中发挥功能的能力,使得类似CrPV的IRES成为研究翻译机制和表达蛋白质的有用工具。我们报告了一种基于RelE的新一代测序方法,称为SMARTI(基于测序的RNA翻译起始突变分析),用于定量确定超过81000个CrPV IRES单突变体和双突变体的功能。结果是一个全面的突变数据库,可作为IRES功能的类似共有序列分析。我们特别关注了IRES元件三个假结内的序列要求。数据表明,每个假结都包含可修饰的位置,甚至通过假易位突变可能增强IRES功能。CrPV IRES在形成翻译起始所需的结构和核糖体接触时,必须在稳定性和动态性之间取得平衡。螺旋区域,尤其是在模拟转运RNA的结构域中,是灵活性可能特别有益的区域。此外,我们证明了这种高通量方法与真核提取物兼容,为研究各种真核RNA元件和设计蛋白质表达序列提供了一条途径。