Institute of Chemical Biology, Shenzhen Bay Laboratory, Shenzhen, China.
Changping Laboratory, Beijing, China.
Nat Commun. 2024 Oct 5;15(1):8633. doi: 10.1038/s41467-024-52948-5.
The characterization of protein complex is vital for unraveling biological mechanisms in various life processes. Despite advancements in biophysical tools, the capture of non-covalent complexes and deciphering of their biochemical composition continue to present challenges for low-input samples. Here we introduce SNAP-MS, a Stationary-phase-dissolvable Native Affinity Purification and Mass Spectrometric characterization strategy. It allows for highly efficient purification and characterization from inputs at the pico-mole level. SNAP-MS replaces traditional elution with matrix dissolving during the recovery of captured targets, enabling the use of high-affinity bait-target pairs and eliminates interstitial voids. The purified intact protein complexes are compatible with native MS, which provides structural information including stoichiometry, topology, and distribution of proteoforms, size variants and interaction states. An algorithm utilizes the bait as a charge remover and mass corrector significantly enhances the accuracy of analyzing heterogeneously glycosylated complexes. With a sample-to-data time as brief as 2 hours, SNAP-MS demonstrates considerable versatility in characterizing native complexes from biological samples, including blood samples.
蛋白质复合物的特性对于揭示各种生命过程中的生物机制至关重要。尽管生物物理工具取得了进步,但对于低投入样本,仍然难以捕获非共价复合物并解析其生化组成。在这里,我们介绍了 SNAP-MS,一种固定相溶解的天然亲和纯化和质谱表征策略。它允许从皮摩尔水平的输入进行高效的纯化和表征。SNAP-MS 在回收捕获的靶标时用基质溶解代替传统的洗脱,从而能够使用高亲和力的诱饵-靶标对,并消除了中间空隙。纯化的完整蛋白质复合物与天然 MS 兼容,提供结构信息,包括蛋白质形式、大小变体和相互作用状态的化学计量、拓扑结构和分布。利用诱饵作为电荷去除剂和质量校正剂的算法可显著提高分析异质糖基化复合物的准确性。SNAP-MS 的样品到数据的时间仅需 2 小时,具有相当大的通用性,可从包括血液样本在内的生物样本中表征天然复合物。