化学
变性(裂变材料)
质谱法
蛋白质组
配体(生物化学)
等压标记
色谱法
生物物理学
串联质谱法
生物化学
蛋白质质谱法
受体
核化学
生物
作者
Martin Mathay,Andrew Keller,James E. Bruce
标识
DOI:10.1021/acs.analchem.2c04501
摘要
Recently, several mass spectrometry methods have utilized protein structural stability for the quantitative study of protein–ligand engagement. These protein-denaturation approaches, which include thermal proteome profiling (TPP) and stability of proteins from rates of oxidation (SPROX), evaluate ligand-induced denaturation susceptibility changes with a MS-based readout. The different techniques of bottom-up protein-denaturation methods each have their own advantages and challenges. Here, we report the combination of protein-denaturation principles with quantitative cross-linking mass spectrometry using isobaric quantitative protein interaction reporter technologies. This method enables the evaluation of ligand-induced protein engagement through analysis of cross-link relative ratios across chemical denaturation. As a proof of concept, we found ligand-stabilized cross-linked lysine pairs in well-studied bovine serum albumin and ligand bilirubin. These links map to the known binding sites Sudlow Site I and subdomain IB. We propose that protein denaturation and qXL-MS can be combined with similar peptide-level quantification approaches, like SPROX, to increase the coverage information profiled for facilitating protein–ligand engagement efforts.
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