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一种具有增强结构建模潜力的高灵敏度蛋白质 - RNA交联质谱工作流程。

A highly sensitive protein-RNA cross-linking mass spectrometry workflow with enhanced structural modeling potential.

作者信息

Sarnowski Chris P, Knörlein Anna, de Vries Tebbe, Götze Michael, Beusch Irene, Aebersold Ruedi, Allain Frédéric H-T, Hall Jonathan, Leitner Alexander

机构信息

Institute of Molecular Systems Biology, Department of Biology, ETH Zürich, 8093 Zurich, Switzerland.

Systems Biology PhD Program, University of Zürich and ETH Zürich, Zurich, Switzerland.

出版信息

Nucleic Acids Res. 2025 Jun 6;53(11). doi: 10.1093/nar/gkaf523.

Abstract

Protein-RNA interactions underpin many critical biological processes, demanding the development of technologies to precisely characterize their nature and functions. Many such technologies depend upon cross-linking under mild irradiation conditions to stabilize contacts between amino acids and nucleobases; for example, the cross-linking of stable isotope labelled RNA coupled to mass spectrometry (CLIR-MS) method. A deeper understanding of the CLIR-MS workflow is required to maximize its impact for structural biology, particularly addressing the low abundance of cross-linking products and the information content of spatial/geometric restraints reflected by a cross-link. Here, we present a vastly improved CLIR-MS pipeline that features enhanced sample preparation, data acquisition and interpretation. These advances significantly increase the number of detected cross-link products per sample. We demonstrate that the procedure is robust against variation of key experimental parameters, including irradiation energy and temperature. Using this improved protocol on four protein-RNA complexes representing canonical and non-canonical RNA-binding domains, we propose for the first time the distances encoded by protein-RNA cross-links, enabling their use as structural restraints. We also compared the cross-linking of canonical RNA with 4-thiouracil-labeled counterparts, showing slight, but noticeable differences. The improved understanding of protein-RNA cross-links refines their structural interpretation and facilitates the adoption of the method in integrative/hybrid structural biology.

摘要

蛋白质与RNA的相互作用是许多关键生物学过程的基础,因此需要开发技术来精确表征它们的性质和功能。许多此类技术依赖于在温和辐照条件下进行交联,以稳定氨基酸与核碱基之间的接触;例如,与质谱联用的稳定同位素标记RNA交联法(CLIR-MS)。为了最大限度地发挥其对结构生物学的影响,需要更深入地了解CLIR-MS工作流程,特别是要解决交联产物丰度低以及交联所反映的空间/几何限制的信息含量问题。在此,我们展示了一个大幅改进的CLIR-MS流程,其特点是在样品制备、数据采集和解释方面有所增强。这些进展显著增加了每个样品中检测到的交联产物数量。我们证明该程序对包括辐照能量和温度在内的关键实验参数的变化具有鲁棒性。在代表典型和非典型RNA结合结构域的四种蛋白质-RNA复合物上使用这种改进的方案,我们首次提出了蛋白质-RNA交联所编码的距离,使其能够用作结构限制。我们还比较了典型RNA与4-硫尿嘧啶标记的对应物的交联情况,结果显示出轻微但明显的差异。对蛋白质-RNA交联的更好理解完善了它们的结构解释,并促进了该方法在整合/混合结构生物学中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/639d/12203917/8d8f5f851891/gkaf523figgra1.jpg

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