| Literature DB >> 30938513 |
Shino Manabe1, Yoshiki Yamaguchi1,2, Kana Matsumoto2, Hirobumi Fuchigami3, Taiji Kawase4, Kenji Hirose4, Ai Mitani5, Wataru Sumiyoshi5, Takashi Kinoshita5, Junpei Abe1, Masahiro Yasunaga3, Yasuhiro Matsumura3, Yukishige Ito1.
Abstract
Glycan engineering of antibodies has received considerable attention. Although various endo-β- N-acetylglucosaminidase mutants have been developed for glycan remodeling, a side reaction has been reported between glycan oxazoline and amino groups. In this study, we performed a detailed characterization for antibody products obtained through enzymatic and nonenzymatic reactions with the aim of maximizing the efficiency of the glycosylation reaction with fewer side products. The reactions were monitored by an ultraperformance liquid chromatography system using an amide-based wide-pore column. The products were characterized by liquid chromatography coupled with tandem mass spectrometry. The side reactions were suppressed by adding glycan oxazoline in a stepwise manner under slightly acidic conditions. Through a combination of an azide-carrying glycan transfer reaction under optimized conditions and a bio-orthogonal reaction, a potent cytotoxic agent monomethyl auristatin E was site-specifically conjugated at N-glycosylated Asn297 with a drug-to-antibody ratio of 4. The prepared antibody-drug conjugate exhibited cytotoxicity against HER2-expressing cells.Entities:
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Year: 2019 PMID: 30938513 DOI: 10.1021/acs.bioconjchem.9b00132
Source DB: PubMed Journal: Bioconjug Chem ISSN: 1043-1802 Impact factor: 4.774