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结合凝集素亲和色谱法和糖捕获方法的结果可显著提高糖蛋白质组的覆盖范围。

Combining results from lectin affinity chromatography and glycocapture approaches substantially improves the coverage of the glycoproteome.

作者信息

McDonald Claudia A, Yang Jane Y, Marathe Vinita, Yen Ten-Yang, Macher Bruce A

机构信息

Department of Chemistry and Biochemistry, San Francisco State University, San Francisco, CA 94132, USA.

出版信息

Mol Cell Proteomics. 2009 Feb;8(2):287-301. doi: 10.1074/mcp.M800272-MCP200. Epub 2008 Oct 15.

Abstract

Identification of glycosylated proteins, especially those in the plasma membrane, has the potential of defining diagnostic biomarkers and therapeutic targets as well as increasing our understanding of changes occurring in the glycoproteome during normal differentiation and disease processes. Although many cellular proteins are glycosylated they are rarely identified by mass spectrometric analysis (e.g. shotgun proteomics) of total cell lysates. Therefore, methods that specifically target glycoproteins are necessary to facilitate their isolation from total cell lysates prior to their identification by mass spectrometry-based analysis. To enrich for plasma membrane glycoproteins the methods must selectively target characteristics associated with proteins within this compartment. We demonstrate that the application of two methods, one that uses periodate to label glycoproteins of intact cells and a hydrazide resin to capture the labeled glycoproteins and another that targets glycoproteins with sialic acid residues using lectin affinity chromatography, in conjunction with liquid chromatography-tandem mass spectrometry is effective for plasma membrane glycoprotein identification. We demonstrate that this combination of methods dramatically increases coverage of the plasma membrane proteome (more than one-half of the membrane glycoproteins were identified by the two methods uniquely) and also results in the identification of a large number of secreted glycoproteins. Our approach avoids the need for subcellular fractionation and utilizes a simple detergent lysis step that effectively solubilizes membrane glycoproteins. The plasma membrane localization of a subset of proteins identified was validated, and the dynamics of their expression in HeLa cells was evaluated during the cell cycle. Results obtained from the cell cycle studies demonstrate that plasma membrane protein expression can change up to 4-fold as cells transit the cell cycle and demonstrate the need to consider such changes when carrying out quantitative proteomics comparison of cell lines.

摘要

糖基化蛋白的鉴定,尤其是质膜中的糖基化蛋白,有潜力确定诊断生物标志物和治疗靶点,并增进我们对正常分化和疾病过程中糖蛋白组变化的理解。尽管许多细胞蛋白是糖基化的,但在总细胞裂解物的质谱分析(如鸟枪法蛋白质组学)中却很少能鉴定出来。因此,在通过基于质谱的分析鉴定糖蛋白之前,需要有专门针对糖蛋白的方法来促进其从总细胞裂解物中分离出来。为了富集质膜糖蛋白,这些方法必须选择性地针对与该区域内蛋白质相关的特征。我们证明,将两种方法结合使用,一种是利用高碘酸盐标记完整细胞的糖蛋白,并用酰肼树脂捕获标记的糖蛋白,另一种是利用凝集素亲和色谱法靶向带有唾液酸残基的糖蛋白,再结合液相色谱 - 串联质谱,对于质膜糖蛋白的鉴定是有效的。我们证明,这种方法组合显著增加了质膜蛋白质组的覆盖范围(两种方法独特地鉴定出了超过一半的膜糖蛋白),还鉴定出了大量分泌型糖蛋白。我们的方法无需进行亚细胞分级分离,利用简单的去污剂裂解步骤就能有效地溶解膜糖蛋白。对鉴定出的一部分蛋白质的质膜定位进行了验证,并评估了它们在HeLa细胞细胞周期中的表达动态。细胞周期研究的结果表明,当细胞通过细胞周期时,质膜蛋白表达最多可变化4倍,这表明在对细胞系进行定量蛋白质组学比较时需要考虑此类变化。

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