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基于鸟枪法糖肽捕获技术结合质谱分析的全面糖蛋白质组学方法

Shotgun glycopeptide capture approach coupled with mass spectrometry for comprehensive glycoproteomics.

作者信息

Sun Bingyun, Ranish Jeffrey A, Utleg Angelita G, White James T, Yan Xiaowei, Lin Biaoyang, Hood Leroy

机构信息

Institute for Systems Biology, Seattle, Washington 98103, USA.

出版信息

Mol Cell Proteomics. 2007 Jan;6(1):141-9. doi: 10.1074/mcp.T600046-MCP200. Epub 2006 Oct 29.

Abstract

We present a robust and general shotgun glycoproteomics approach to comprehensively profile glycoproteins in complex biological mixtures. In this approach, glycopeptides derived from glycoproteins are enriched by selective capture onto a solid support using hydrazide chemistry followed by enzymatic release of the peptides and subsequent analysis by tandem mass spectrometry. The approach was validated using standard protein mixtures that resulted in a close to 100% capture efficiency. Our capture approach was then applied to microsomal fractions of the cisplatin-resistant ovarian cancer cell line IGROV-1/CP. With a Protein Prophet probability value greater than 0.9, we identified a total of 302 proteins with an average protein identification rate of 136 +/- 19 (n = 4) in a single linear quadrupole ion trap (LTQ) mass spectrometer nano-LC-MS experiment and a selectivity of 91 +/- 1.6% (n = 4) for the N-linked glycoconsensus sequence. Our method has several advantages. 1) Digestion of proteins initially into peptides improves the solubility of large membrane proteins and exposes all of the glycosylation sites to ensure equal accessibility to capture reagents. 2) Capturing glycosylated peptides can effectively reduce sample complexity and at the same time increase the confidence of MS-based protein identifications (more potential peptide identifications per protein). 3) The utility of sodium sulfite as a quencher in our capture approach to replace the solid phase extraction step in an earlier glycoprotein chemical capture approach for removing excess sodium periodate allows the overall capture procedure to be completed in a single vessel. This improvement minimizes sample loss, increases sensitivity, and makes our protocol amenable for high throughput implementation, a feature that is essential for biomarker identification and validation of a large number of clinical samples. 4) The approach is demonstrated here on the analysis of N-linked glycopeptides; however, it can be applied equally well to O-glycoprotein analysis.

摘要

我们提出了一种强大且通用的鸟枪法糖蛋白质组学方法,用于全面分析复杂生物混合物中的糖蛋白。在这种方法中,源自糖蛋白的糖肽通过酰肼化学选择性捕获到固相载体上进行富集,随后进行肽段的酶解释放,并通过串联质谱进行后续分析。该方法使用标准蛋白质混合物进行了验证,捕获效率接近100%。然后,我们将捕获方法应用于顺铂耐药卵巢癌细胞系IGROV-1/CP的微粒体组分。在单一线性四极杆离子阱(LTQ)质谱仪的纳升液相色谱-质谱实验中,蛋白质先知概率值大于0.9,我们总共鉴定出302种蛋白质,单次实验中平均蛋白质鉴定率为136±19(n = 4),对N-连接糖基共有序列的选择性为91±1.6%(n = 4)。我们的方法具有几个优点。1)首先将蛋白质消化成肽段可提高大膜蛋白的溶解度,并使所有糖基化位点暴露,以确保捕获试剂具有同等的可及性。2)捕获糖基化肽段可有效降低样品复杂性,同时提高基于质谱的蛋白质鉴定的可信度(每个蛋白质有更多潜在的肽段鉴定)。3)在我们的捕获方法中使用亚硫酸钠作为淬灭剂,以取代早期糖蛋白化学捕获方法中用于去除过量高碘酸钠的固相萃取步骤,使得整个捕获过程能够在单个容器中完成。这一改进最大限度地减少了样品损失,提高了灵敏度,并使我们的方案适用于高通量实施,这一特性对于生物标志物鉴定和大量临床样品的验证至关重要。4)这里展示了该方法对N-连接糖肽的分析;然而,它同样适用于O-糖蛋白分析。

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