BlotGlycoABC™, an Integrated Glycoblotting Technique for Rapid and Large Scale Clinical Glycomics

Recent progress in mass spectrometry has led to new challenges in glycomics, including the development of rapid glycan enrichment techniques. A facile technique for exploration of a carbohydrate-related biomarker is important because proteomics research targets glycosylation, a posttranslational mod...

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Veröffentlicht in:Molecular & cellular proteomics 2008-02, Vol.7 (2), p.370
Hauptverfasser: Yoshiaki Miura, Megumi Hato, Yasuro Shinohara, Hiromitsu Kuramoto, Jun-ichi Furukawa, Masaki Kurogochi, Hideyuki Shimaoka, Mitsuhiro Tada, Kazuaki Nakanishi, Michitaka Ozaki, Satoru Todo, Shin-Ichiro Nishimura
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container_issue 2
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container_title Molecular & cellular proteomics
container_volume 7
creator Yoshiaki Miura
Megumi Hato
Yasuro Shinohara
Hiromitsu Kuramoto
Jun-ichi Furukawa
Masaki Kurogochi
Hideyuki Shimaoka
Mitsuhiro Tada
Kazuaki Nakanishi
Michitaka Ozaki
Satoru Todo
Shin-Ichiro Nishimura
description Recent progress in mass spectrometry has led to new challenges in glycomics, including the development of rapid glycan enrichment techniques. A facile technique for exploration of a carbohydrate-related biomarker is important because proteomics research targets glycosylation, a posttranslational modification. Here we report an “all-in-one” protocol for high throughput clinical glycomics. This new technique integrates glycoblotting-based glycan enrichment onto the BlotGlycoABC™ bead, on-bead stabilization of sialic acids, and fluorescent labeling of oligosaccharides in a single workflow on a multiwell filter plate. The advantage of this protocol and MALDI-TOF MS was demonstrated through differentiation of serum N -glycan profiles of subjects with congenital disorders of glycosylation and hepatocellular carcinoma and healthy donors. The method also permitted total cellular glycomics analysis of human prostate cancer cells and normal human prostate epithelial cells. These results demonstrate the potentials of glycan enrichment/processing for biomarker discovery.
doi_str_mv 10.1074/mcp.M700377-MCP200
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