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Mass Spectrometric Method for Determining the Uronic Acid Epimerization in Heparan Sulfate Disaccharides Generated using Nitrous Acid

机译:质谱法测定糖醛酸差向异构化硫酸乙酰肝素二糖使用亚硝酸生成

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摘要

Heparan sulfate (HS) glycosaminoglycans (GAGs) regulate a host of biological functions. To better understand their biological roles, it is necessary to gain understanding about the structure of HS, which requires identification of the sulfation pattern as well as the uronic acid epimerization. In order to model HS structure, it is necessary to quantitatively profile depolymerization products. To date, liquid chromatography-mass spectrometry (LC-MS) methods for profiling heparin lyase decomposition products have been shown. These enzymes, however, destroy information about uronic acid epimerization. Deaminative cleavage using nitrous acid (HONO) is a classic method for GAG depolymerization that retains uronic acid epimerization. Several chromatographic methods have been used for analysis of deaminative cleavage products. The chromatographic methods have the disadvantage that there is no direct readout on the structures producing the observed peaks. This report demonstrates a porous graphitized carbon (PGC)-MS method for the quantification of HONO generated disaccharides to obtain information about the sulfation pattern and uronic acid epimerization. Here we demonstrate the separation and identification of uronic acid epimers as well as geometric sulfation isomers. The results are comparable to those expected for benchmark HS and heparin samples. The data demonstrate the utility of PGC-MS for quantification of HS nitrous acid depolymerization products for structural analysis of HS and heparin.
机译:硫酸乙酰肝素(HS)糖胺聚糖(GAG)调节许多生物学功能。为了更好地了解它们的生物学作用,有必要了解HS的结构,这需要鉴定硫酸化模式以及糖醛酸差向异构。为了模拟HS结构,有必要对解聚产物进行定量分析。迄今为止,已经显示了用于分析肝素裂解酶分解产物的液相色谱-质谱(LC-MS)方法。然而,这些酶破坏了关于糖醛酸差向异构化的信息。使用亚硝酸(HONO)进行的脱氨基裂解是GAG解聚的经典方法,可保留糖醛酸差向异构。几种色谱方法已用于分析脱氨裂解产物。色谱法的缺点是在产生观察到的峰的结构上没有直接读出。该报告展示了一种多孔石墨化碳(PGC)-MS方法,用于定量HONO生成的二糖,以获得有关硫酸化模式和糖醛酸差向异构化的信息。在这里,我们证明了糖醛酸差向异构体以及几何硫酸化异构体的分离和鉴定。结果与基准HS和肝素样品的预期结果相当。数据表明,PGC-MS可用于定量HS亚硝酸解聚产物,用于HS和肝素的结构分析。

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