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A two-step probing method to compare lysine accessibility across macromolecular complex conformations

机译:一种两步探测方法,可在大分子复杂构象上比较赖氨酸可访问性

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摘要

Structural models of large and dynamic molecular complexes are appearing in increasing numbers, in large part because of recent technical advances in cryo-electron microscopy. However, the inherent complexity of such biological assemblies comprising dozens of moving parts often limits the resolution of structural models and leaves the puzzle as to how each functional configuration transitions to the next. Orthogonal biochemical information is crucial to understanding the molecular interactions that drive those rearrangements. We present a two-step method for chemical probing detected by tandem mass-spectrometry to globally assess the reactivity of lysine residues within purified macromolecular complexes. Because lysine side chains often balance the negative charge of RNA in ribonucleoprotein complexes, the method is especially useful for detecting changes in protein-RNA interactions. By probing the E. coli 30S ribosome subunit, we established that the reactivity pattern of lysine residues quantitatively reflects structure models derived from X-ray crystallography. We also used the strategy to assess differences in three conformations of purified human spliceosomes in the context of recent cryo-electron microscopy models. Our results demonstrate that the probing method yields powerful biochemical information that helps contextualize architectural rearrangements of intermediate resolution structures of macromolecular complexes, often solved in multiple conformations.
机译:大型和动态分子复合物的结构模型在越来越多的数量上出现,大部分是由于近期冷冻电子显微镜的技术进步。然而,包括数十个运动部件的这种生物组件的固有复杂性通常限制结构模型的分辨率,并留下拼图,以及每个功能配置如何转换到下一个功能。正交的生化信息对于了解驱动这些重排的分子相互作用至关重要。我们介绍了通过串联质谱检测的化学探测方法,以全局评估纯化大分子复合物内赖氨酸残基的反应性。因为赖氨酸侧链通常平衡RNA中RNA中的负电荷,所以该方法特别适用于检测蛋白质RNA相互作用的变化。通过探测大肠杆菌30S核糖体亚基,我们确定赖氨酸残基的反应性模式定量地反映衍生自X射线晶体学的结构模型。我们还使用该策略在最近的冷冻电子显微镜模型的背景下评估纯化的人脾蛋白的三个构象的差异。我们的结果表明,探测方法产生强大的生化信息,有助于内容化大分子复合物的中间分辨率结构的架构重排,通常在多个构象中解决。

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