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首页> 外文期刊>Journal of proteome research >A high-throughput O-glycopeptide discovery platform for seromic profiling
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A high-throughput O-glycopeptide discovery platform for seromic profiling

机译:用于血清分析的高通量O-糖肽发现平台

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Biomarker microarrays are becoming valuable tools for serological screening of disease-associated autoantibodies. Post-translational modifications (PTMs) such as glycosylation extend the range of protein function, and a variety of glycosylated proteins are known to be altered in disease progression. Here, we have developed a synthetic screening microarray platform for facile display of O-glycosylated peptides (O-PTMs). By introduction of a capping step during chemical solid-phase glycopeptide synthesis, selective enrichment of N-terminal glycopeptide end products was achieved on an amine-reactive hydrogel-coated microarray glass surface, allowing high-throughput display of large numbers of glycopeptides. Utilizing a repertoire of recombinant glycosyltransferases enabled further diversification of the array libraries in situ and display of a new level of potential biomarker candidates for serological screening. As proof-of-concept, we have demonstrated that MUC1 glycopeptides could be assembled and used to detect autoantibodies in vaccine-induced disease-free breast cancer patients and in patients with confirmed disease at time of diagnosis.
机译:生物标志物微阵列正在成为疾病相关自身抗体血清学筛查的重要工具。翻译后修饰(PTM)(例如糖基化)扩展了蛋白质功能的范围,并且已知各种糖基化蛋白质在疾病进展中会发生变化。在这里,我们已经开发出一种合成筛选微阵列平台,可轻松展示O-糖基化肽(O-PTM)。通过在化学固相糖肽合成过程中引入封端步骤,在胺反应性水凝胶包被的微阵列玻璃表面上实现了N末端糖肽终产物的选择性富集,从而可以高通量显示大量糖肽。利用重组糖基转移酶的库能够进一步使阵列库原位多样化,并显示出用于血清学筛选的潜在生物标志物候选水平的新水平。作为概念验证,我们证明了MUC1糖肽可以组装并用于检测疫苗诱导的无病乳腺癌患者和诊断时确诊疾病的患者中的自身抗体。

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