Department of Oncology, Lombardi Comprehensive Cancer Center, Georgetown University , 3970 Reservoir Road NW, Washington, DC 20057-1465, United States.
J Proteome Res. 2012 Mar 2;11(3):1728-40. doi: 10.1021/pr201183w. Epub 2012 Feb 6.
Glycoproteins fulfill many indispensable biological functions, and changes in protein glycosylation have been observed in various diseases. Improved analytical methods are needed to allow a complete characterization of this complex and common post-translational modification. In this study, we present a workflow for the analysis of the microheterogeneity of N-glycoproteins that couples hydrophilic interaction and nanoreverse-phase C18 chromatography to tandem QTOF mass spectrometric analysis. A glycan database search program, GlycoPeptideSearch, was developed to match N-glycopeptide MS/MS spectra with the glycopeptides comprised of a glycan drawn from the GlycomeDB glycan structure database and a peptide from a user-specified set of potentially glycosylated peptides. Application of the workflow to human haptoglobin and hemopexin, two microheterogeneous N-glycoproteins, identified a total of 57 distinct site-specific glycoforms in the case of haptoglobin and 14 site-specific glycoforms of hemopexin. Using glycan oxonium ions and peptide-characteristic glycopeptide fragment ions and by collapsing topologically redundant glycans, the search software was able to make unique N-glycopeptide assignments for 51% of assigned spectra, with the remaining assignments primarily representing isobaric topological rearrangements. The optimized workflow, coupled with GlycoPeptideSearch, is expected to make high-throughput semiautomated glycopeptide identification feasible for a wide range of users.
糖蛋白具有许多不可或缺的生物学功能,在各种疾病中观察到蛋白质糖基化的改变。需要改进分析方法以允许对这种复杂且常见的翻译后修饰进行完整的表征。在这项研究中,我们提出了一种分析 N-糖蛋白微异质性的工作流程,该工作流程将亲水相互作用和纳米反相 C18 色谱法与串联 QTOF 质谱分析相结合。开发了一个聚糖数据库搜索程序 GlycoPeptideSearch,用于将 N-糖肽 MS/MS 谱与由聚糖结构数据库 GlycomeDB 中的聚糖和用户指定的可能糖基化肽集中的肽组成的糖肽进行匹配。该工作流程应用于人触珠蛋白和血红素结合蛋白这两种微异质性 N-糖蛋白,在触珠蛋白的情况下鉴定出了总共 57 种特定位置的糖型,而血红素结合蛋白的情况下鉴定出了 14 种特定位置的糖型。使用聚糖氧鎓离子和肽特征糖肽片段离子,并通过折叠拓扑冗余聚糖,搜索软件能够对 51%分配的谱图进行唯一的 N-糖肽分配,其余分配主要代表等排拓扑重排。优化的工作流程与 GlycoPeptideSearch 相结合,有望使高通量半自动糖肽鉴定成为广泛用户的可行选择。