Williams Taufika Islam, Saggese Diana A, Toups Kristina L, Frahm Jennifer L, An Hyun Joo, Li Bensheng, Lebrilla Carlito B, Muddiman David C
W.M. Keck FT-ICR Mass Spectrometry Laboratory, Department of Chemistry, North Carolina State University, Raleigh, NC 27695, USA.
J Mass Spectrom. 2008 Sep;43(9):1215-23. doi: 10.1002/jms.1398.
Posttranslational modifications such as glycosylation can play a fundamental role in signaling pathways that transform an ordinary cell into a malignant one. The development of a protocol to detect these changes in the preliminary stages of disease can lead to a sensitive and specific diagnostic for the early detection of malignancies such as ovarian cancer in which differential glycan patterns are linked to etiology and progression. Small variations in instrument parameters and sample preparation techniques are known to have significant influence on the outcome of an experiment. For an experiment to be effective and reproducible, these parameters must be optimized for the analyte(s) under study. We present a detailed examination of sample preparation and matrix-assisted laser desorption/ionization Fourier transform ion cyclotron resonance mass spectrometry (MALDI-FT-ICR-MS) analysis of O-linked glycans globally cleaved from mucin glycoproteins. Experiments with stable isotope-labeled biomolecules allowed for the establishment of appropriate acquisition times and excitation voltages for MALDI-FT-ICR-MS of oligosaccharides. Quadrupole ion guide optimization studies with mucin glycans identified conditions for the comprehensive analysis of the entire mass range of O-linked carbohydrates in this glycoprotein. Separately optimized experimental parameters were integrated in a method that allowed for the effective study of O-linked glycans.
翻译后修饰(如糖基化)在将普通细胞转变为恶性细胞的信号通路中可发挥重要作用。开发一种在疾病早期阶段检测这些变化的方案,能够实现对诸如卵巢癌等恶性肿瘤的灵敏且特异的诊断,在卵巢癌中,不同的聚糖模式与病因和病程相关。众所周知,仪器参数和样品制备技术的微小变化会对实验结果产生重大影响。为使实验有效且可重复,必须针对所研究的分析物对这些参数进行优化。我们详细研究了从粘蛋白糖蛋白上整体切割下来的O - 连接聚糖的样品制备以及基质辅助激光解吸/电离傅里叶变换离子回旋共振质谱(MALDI - FT - ICR - MS)分析。使用稳定同位素标记生物分子的实验,为寡糖的MALDI - FT - ICR - MS确定了合适的采集时间和激发电压。对粘蛋白聚糖进行的四极杆离子导向器优化研究,确定了对该糖蛋白中O - 连接碳水化合物的整个质量范围进行全面分析的条件。将分别优化的实验参数整合到一种方法中,该方法能够有效地研究O - 连接聚糖。