National Research Council Canada-Institute for Biological Sciences, Ottawa, ON, Canada.
Proteomics. 2012 Aug;12(15-16):2510-22. doi: 10.1002/pmic.201100567. Epub 2012 Jul 23.
The development of glycomics increasingly requires the detection and quantification of large numbers of glycans, which is only partially achieved by current glycomics approaches. Taking advantage of selected reaction monitoring to enhance both sensitivity and selectivity, we report here a strategy termed targeted glycomics that enables highly sensitive and consistent identification and quantification of diverse glycans across multiple samples at the same time. In this proof-of-principle study, we validated the method by analyzing global N-glycans expressed in different systems: single proteins, cancer cells, and serum samples. A dynamic range of three orders of magnitude was obtained for the detection of all five glycans released from ribonuclease B. The limit of detection of 80 attomole for Man(9)GlcNAc(2) demonstrated the excellent sensitivity of the method. The capability of the strategy to identify diverse glycans was demonstrated by identification and detection of 162 different glycans and isomers from pancreatic cancer cells. The sensitivity of the method was illustrated further by the ability to detect eight glycans from 250 cancer cells and five glycans released from 100 cancer cells. In serum obtained from rabbits fed control diet or diet enriched with 2% cholesterol, differences to 42 glycans were accurately measured and this indicates that this strategy might find use in studies of biomarker discovery and validation.
糖组学的发展越来越需要检测和定量大量的聚糖,而这仅部分可以通过当前的糖组学方法实现。利用选择反应监测(Selected Reaction Monitoring)来提高灵敏度和选择性,我们在此报告了一种称为靶向糖组学的策略,该策略能够同时对多个样本中的多种聚糖进行高度敏感和一致的鉴定和定量。在这项原理验证研究中,我们通过分析在不同系统中表达的全球 N-聚糖来验证该方法:单一蛋白质、癌细胞和血清样本。从核糖核酸酶 B 释放的所有五种聚糖的检测均获得了三个数量级的动态范围。对 Man(9)GlcNAc(2)的检测限为 80 飞摩尔,证明了该方法的出色灵敏度。该策略识别多种聚糖的能力通过鉴定和检测来自胰腺癌的 162 种不同聚糖和异构体得到了证明。从 250 个癌细胞中检测到 8 种聚糖以及从 100 个癌细胞中释放出 5 种聚糖,进一步说明了该方法的灵敏度。在从喂食对照饮食或富含 2%胆固醇饮食的兔子获得的血清中,可以准确测量到 42 种聚糖的差异,这表明该策略可能适用于生物标志物发现和验证的研究。