Department of Chemistry, Washington University in St Louis, St Louis, MO, USA.
Eur J Mass Spectrom (Chichester). 2023 Oct;29(5-6):292-302. doi: 10.1177/14690667231202695. Epub 2023 Sep 26.
Irreversible protein footprinting is a mass spectrometry-based approach in which solvent-accessible sites of a protein are modified to assess high-order protein structure. Structural insights can be gained by determining the position and extents of modification. The usual approach to obtain the "footprint" is to analyze the protein through bottom-up LC-MS/MS. In this approach, the proteins are digested to yield a mixture of peptides that are then separated by LC before locating the modification sites by MS/MS. This process consumes substantial amounts of time and is difficult to accelerate for applications that require quick and high-throughput analysis. Here, we describe employing matrix-assisted laser desorption/ionization (MALDI) in-source decay (ISD) to analyze a footprinted small test protein (ubiquitin) via a top-down approach. Matrix-assisted laser desorption/ionization is easily adapted for high-throughput analysis, and top-down strategies can avoid lengthy proteolysis and LC separation. We optimized the method with model peptides and then demonstrated its feasibility on ubiquitin submitted to two types of footprinting. We found that MALDI ISD can produce a comprehensive set of fragment ions for small proteins, affording footprinting information in a fast manner and giving results that agree with the established methods, and serve as a rough measure of protein solvent accessibility. To assist in the implementation of the MALDI approach, we developed a method of processing top-down ISD data.
不可逆转的蛋白质足迹分析是一种基于质谱的方法,其中蛋白质的溶剂可及性位点被修饰,以评估高级蛋白质结构。通过确定修饰位置和程度,可以获得结构见解。获得“足迹”的常用方法是通过自上而下的 LC-MS/MS 分析蛋白质。在这种方法中,蛋白质被消化以产生肽混合物,然后通过 LC 分离,然后通过 MS/MS 定位修饰位点。该过程消耗大量时间,并且对于需要快速和高通量分析的应用程序很难加速。在这里,我们描述了通过自上而下的方法,使用基质辅助激光解吸/电离(MALDI)源内衰减(ISD)来分析经过足迹处理的小测试蛋白(泛素)。MALDI 非常适合高通量分析,并且自上而下的策略可以避免冗长的蛋白水解和 LC 分离。我们使用模型肽优化了该方法,然后在经过两种类型足迹处理的泛素上证明了其可行性。我们发现 MALDI ISD 可以为小蛋白产生一套全面的片段离子,以快速提供足迹信息,并给出与现有方法一致的结果,并作为蛋白质溶剂可及性的粗略衡量标准。为了协助实施 MALDI 方法,我们开发了一种处理自上而下 ISD 数据的方法。