Centre for Medicines Discovery, ORCRB, University of Oxford, Oxford, UK.
Agilent Technologies, Lakeside, Cheadle Royal Business Park, Cheadle, Cheshire, UK.
Commun Biol. 2021 Aug 3;4(1):934. doi: 10.1038/s42003-021-02455-w.
We describe an analytical method for the identification, mapping and relative quantitation of glycopeptides from SARS-CoV-2 Spike protein. The method may be executed using a LC-TOF mass spectrometer, requires no specialized knowledge of glycan analysis and exploits the differential resolving power of reverse phase HPLC. While this separation technique resolves peptides with high efficiency, glycans are resolved poorly, if at all. Consequently, glycopeptides consisting of the same peptide bearing different glycan structures will all possess very similar retention times and co-elute. Rather than a disadvantage, we show that shared retention time can be used to map multiple glycan species to the same peptide and location. In combination with MSMS and pseudo MS3, we have constructed a detailed mass-retention time database for Spike glycopeptides. This database allows any accurate mass LC-MS laboratory to reliably identify and quantify Spike glycopeptides from a single overnight elastase digest in less than 90 minutes.
我们描述了一种用于鉴定、定位和相对定量 SARS-CoV-2 Spike 蛋白糖肽的分析方法。该方法可使用 LC-TOF 质谱仪执行,无需糖分析的专业知识,并利用反相 HPLC 的差异分辨率。虽然这种分离技术可以高效地分离肽,但糖的分离效果很差,如果有的话。因此,由具有不同糖结构的相同肽组成的糖肽将具有非常相似的保留时间并共洗脱。我们展示了共享保留时间可用于将多种糖种映射到同一肽和位置,而不是劣势。结合 MSMS 和伪 MS3,我们构建了 Spike 糖肽的详细质量保留时间数据库。该数据库允许任何准确质量 LC-MS 实验室在不到 90 分钟的时间内,仅通过单个 overnight 弹性蛋白酶消化即可可靠地鉴定和定量 Spike 糖肽。