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一锅两探针法揭示靶向糖蛋白生物标志物。

One-Pot Two-Nanoprobe Assay Uncovers Targeted Glycoprotein Biosignature.

机构信息

Department of Chemistry, National Taiwan Normal University , Taipei, Taiwan.

Caraga State University , Butuan City, Philippines.

出版信息

Anal Chem. 2017 Apr 4;89(7):3973-3980. doi: 10.1021/acs.analchem.6b04396. Epub 2017 Mar 21.

Abstract

We report a one-pot two-nanoprobe approach coupled to mass spectrometry for simultaneous quantification and post-translational modification (PTM) profiling of targeted protein in biofluid. Using N-glycoprotein as model, the assay employs two nanoprobes, antibody-conjugated SiO nanoparticles and lectin-conjugated magnetic FeO nanoparticles, to achieve target glycoprotein isolation from biofluid and subsequent glycopeptide enrichment in a single tube. As demonstrated on α-fetoprotein (AFP), a serum biomarker for hepatocellular carcinoma (HCC), the assay has high purification specificity (20 glycopeptides) with 2-fold and 10-fold superior total glycopeptide intensity compared to non-one-pot method (9 glycopeptides) or without enrichment (6 glycopeptides), respectively. By multiple reaction monitoring mass spectrometry (MRM-MS) analysis of the nonglycopeptides, the assay can quantify low abundant AFP expression (0.5 ng) with good correlation with conventional ELISA method (Pearson's r = 0.987). Furthermore, we present the first study revealing AFP glycopeptide signatures of individual HCC patients, comprised of 23 heterogeneous glycoforms of bi- and triantennary, core and terminal fucosylation, and mono- to trisialylation. In addition to 12 novel AFP glycoforms, our quantification result uncovers five abundant glycoforms in HCC, including 3 core-fucosylated (CF) forms. These identified CF forms may be evaluated in future studies as potential targets in a glycopeptide biomarker panel to further improve accuracy of conventional AFP-L3 tests. Through this one-pot assay, a comprehensive target protein profile comprised of protein expression and glycosylation pattern was achieved in simple protocol with high sensitivity, reduced analysis time, and minute starting material. This assay can be extended to other PTM biosignatures by conjugation of other affinity ligands on the nanoprobe.

摘要

我们报告了一种一锅两探针方法,结合质谱法,用于同时定量和翻译后修饰 (PTM) 分析生物流体中的靶向蛋白质。以 N-糖蛋白为模型,该测定法使用两种纳米探针,即抗体偶联的 SiO2 纳米颗粒和凝集素偶联的磁性 FeO 纳米颗粒,从生物流体中实现靶糖蛋白的分离,并在单个管中进行后续的糖肽富集。如在血清肝癌标志物 α-胎蛋白 (AFP) 上的结果所示,该测定法具有很高的纯化特异性 (20 个糖肽),与非一锅法 (9 个糖肽) 或无富集 (6 个糖肽) 相比,总糖肽强度分别提高了 2 倍和 10 倍。通过对非糖肽的多重反应监测质谱 (MRM-MS) 分析,该测定法可以定量低丰度 AFP 表达 (0.5ng),与传统 ELISA 方法具有良好的相关性 (Pearson r = 0.987)。此外,我们首次揭示了个体 HCC 患者 AFP 糖肽特征,这些特征包括 23 种异质的双天线、三天线、核心和末端岩藻糖基化、单至三唾液酸化糖肽。除了 12 种新型 AFP 糖肽外,我们的定量结果还揭示了 HCC 中的 5 种丰富糖肽,包括 3 种核心岩藻糖基化 (CF) 形式。这些鉴定的 CF 形式可能在未来的研究中作为糖肽生物标志物面板中的潜在靶标进行评估,以进一步提高传统 AFP-L3 测试的准确性。通过这种一锅测定法,以简单的方案实现了高灵敏度、缩短分析时间和微量起始材料的全面靶蛋白谱,包括蛋白表达和糖基化模式。通过在纳米探针上偶联其他亲和配体,该测定法可以扩展到其他 PTM 生物标志物。

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