Ludger Ltd, Culham Science Centre, Abingdon, Oxfordshire, UK.
Center for Proteomics and Metabolomics, Leiden University Medical Center, Leiden, Netherlands.
Glycoconj J. 2021 Dec;38(6):747-756. doi: 10.1007/s10719-021-10003-1. Epub 2021 Jul 20.
The study of protein O-glycosylation is important in biological research as O-glycans have been reported to regulate a multitude of molecular and cell biology processes occurring in cancer. It is known that alterations in O-glycosylation are involved in the development and progression of cancer. Their easy accessibility makes in vitro established cell lines suitable and useful models for studying biological mechanisms in disease. However, the O-glycosylation analysis of large numbers of samples, as required in systems biology and biomarker discovery studies, is often challenging. In the present study, O-glycans from three human colorectal cancer cell lines and two human pancreatic cancer cell lines were released by semi-automated, high throughput reductive β-elimination and analysed using ultrahigh resolution MALDI-FT-ICR MS. Automated data integration and processing was performed using MassyTools, where the analyte was automatically included for relative quantitation based on a range of selection criteria including signal-to-noise ratio, mass error and isotopic pattern quality scores. A total of 126 O-glycan compositions, ranging from a single monosaccharide to large oligosaccharides exhibiting complex glycan motifs, were detected. The use of ultrahigh resolution MALDI-FTICR MS enabled glycan identification and quantitation in the matrix region of the spectrum. This approach has the potential to be used for O-glycosylation analysis of large numbers of samples, such as patient sample cohorts.
蛋白质 O-糖基化的研究在生物研究中很重要,因为已经报道 O-聚糖调节发生在癌症中的多种分子和细胞生物学过程。已知 O-糖基化的改变参与了癌症的发展和进展。它们易于获得,使体外建立的细胞系成为研究疾病中生物学机制的合适和有用的模型。然而,在系统生物学和生物标志物发现研究中,通常需要对大量样品进行 O-糖基化分析,这往往具有挑战性。在本研究中,通过半自动、高通量的还原 β-消除法从三种人结直肠癌细胞系和两种人胰腺癌细胞系中释放 O-聚糖,并使用超高分辨率 MALDI-FT-ICR MS 进行分析。使用 MassyTools 进行自动数据集成和处理,其中基于包括信噪比、质量误差和同位素图案质量分数在内的一系列选择标准,自动将分析物包括在内进行相对定量。共检测到 126 种 O-聚糖组成,范围从单个单糖到具有复杂糖基化模式的大型寡糖。超高分辨率 MALDI-FTICR MS 的使用能够在光谱的基质区域进行聚糖鉴定和定量。这种方法有可能用于大量样品(例如患者样本队列)的 O-糖基化分析。