Lee Kyung Jin, Jung Jin-Hee, Lee Jung Mi, So Yangkang, Kwon Ohsuk, Callewaert Nico, Kang Hyun Ah, Ko Kisung, Oh Doo-Byoung
Integrative Omics Research Center, Korea Research Institute of Bioscience & Biotechnology, 111 Gwahangno, Yuseong-gu, Daejeon 305-806, Republic of Korea.
Biochem Biophys Res Commun. 2009 Mar 6;380(2):223-9. doi: 10.1016/j.bbrc.2009.01.070. Epub 2009 Jan 22.
High-throughput quantitative analytical method for plant N-glycan has been developed. All steps, including peptide N-glycosidase (PNGase) A treatment, glycan preparation, and exoglycosidase digestion, were optimized for high-throughput applications using 96-well format procedures and automatic analysis on a DNA sequencer. The glycans of horseradish peroxidase with plant-specific core alpha(1,3)-fucose can be distinguished by the comparison of the glycan profiles obtained via PNGase A and F treatments. The peaks of the glycans with (91%) and without (1.2%) alpha(1,3)-fucose could be readily quantified and shown to harbor bisecting beta(1,2)-xylose via simultaneous treatment with alpha(1,3)-mannosidase and beta(1,2)-xylosidase. This optimized method was successfully applied to analyze N-glycans of plant-expressed recombinant antibody, which was engineered to contain a minor amount of glycan harboring beta(1,2)-xylose. These results indicate that our DNA sequencer-based method provides quantitative information for plant-specific N-glycan analysis in a high-throughput manner, which has not previously been achieved by glycan profiling based on mass spectrometry.
已开发出用于植物N-聚糖的高通量定量分析方法。包括肽N-糖苷酶(PNGase)A处理、聚糖制备和外切糖苷酶消化在内的所有步骤,都针对高通量应用进行了优化,采用96孔板格式程序并在DNA测序仪上进行自动分析。通过比较经PNGase A和F处理获得的聚糖谱,可以区分含有植物特异性核心α(1,3)-岩藻糖的辣根过氧化物酶的聚糖。通过与α(1,3)-甘露糖苷酶和β(1,2)-木糖苷酶同时处理,含有(91%)和不含有(1.2%)α(1,3)-岩藻糖的聚糖峰可以很容易地定量,并显示含有平分型β(1,2)-木糖。这种优化后的方法成功应用于分析植物表达的重组抗体的N-聚糖,该重组抗体经工程改造含有少量含有β(1,2)-木糖的聚糖。这些结果表明,我们基于DNA测序仪的方法以高通量方式为植物特异性N-聚糖分析提供了定量信息,这是基于质谱的聚糖谱分析以前未曾实现的。