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In-Gel β-Elimination and Aqueous-Organic Partition for Improved O-and Sulfoglycomics

机译:凝胶内β-消除和水性有机分配可改善O和糖基糖酵解

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Sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) is a widely used technique for protein separation, and in-gel tryptic digestion of resolved protein bands has enhanced the resolution of protoeomic analysis. To augment this technology and expand its usefulness for glycoproteomics, we have developed and improved methods to release and recover O-linked glycans from proteins resolved in SDS-PAGE gels for subsequent analysis by mass spectrometry (MS). Gel pieces containing target proteins are washed to remove contaminants. O-linked glycans are released through reductive β-elimination by hydrating gel pieces in base and adding reductant. Following straightforward sample cleanup, this simple treatment of glycoprotein gel pieces produces material suitable for MS analysis. We have applied this method to the analysis of mucin-type glycoproteins that are expected to carry high densities of sialylated and sulfated O-linked glycans. However, the strongly acidic nature of the sulfate moiety suppresses MS signal intensities, hampering detection and quantitative analysis. To enhance detection, we present an improved method for sulfoglycomics. A mixture of sulflo-, sialo-, and neutral glycans were permethylated and partitioned into a water-dichloromethane (DCM) solvent mixture. Sulfated glycans were selectively recovered from the aqueous phase, while neutral and sialylated glycans remained in the DCM phase. When applied to the analysis of human mucin salivary glycans, this partition method generated material of sufficient quality to identify more than 60 glycan structures by NSI-MS (LTQ-Orbitrap) in positive and negative ion modes. Also, nearly 100% of the sulfated O-linked glycans were recovered in the aqueous phase, demonstrating the feasibility of in-depth sulfoglycomic analysis using SDS-PAGE resolved proteins.
机译:十二烷基硫酸钠-聚丙烯酰胺钠凝胶电泳(SDS-PAGE)是一种广泛用于蛋白质分离的技术,而凝胶内胰蛋白酶消化的已分解蛋白质条带提高了蛋白质组学分析的分辨率。为了增强该技术并扩大其在糖蛋白组学中的用途,我们开发并改进了从SDS-PAGE凝胶中分离的蛋白质中释放和回收O-连接的聚糖的方法,以用于随后的质谱分析(MS)。洗涤含有靶蛋白的凝胶碎片以去除污染物。通过在基质中水合凝胶碎片并添加还原剂,通过还原性β消除来释放O-连接的聚糖。样品直接纯化后,糖蛋白凝胶碎片的这种简单处理就产生了适合MS分析的材料。我们已经将此方法应用于粘蛋白型糖蛋白的分析,这些蛋白预期携带高密度的唾液酸化和硫酸化的O-连接聚糖。但是,硫酸盐部分的强酸性抑制了MS信号强度,妨碍了检测和定量分析。为了增强检测,我们提出了一种改进的糖酵解方法。磺基,唾液酸和中性聚糖的混合物被全甲基化并分配到水-二氯甲烷(DCM)溶剂混合物中。从水相中选择性回收硫酸化聚糖,而中性和唾液酸化聚糖保留在DCM相中。当用于人类粘蛋白唾液聚糖分析时,这种分配方法产生的物质质量足以通过NSI-MS(LTQ-Orbitrap)在正离子和负离子模式下鉴定60多个聚糖结构。同样,在水相中回收了近100%的硫酸化O-连接的聚糖,这表明使用SDS-PAGE解析的蛋白质进行深入的糖酵解分析的可行性。

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