主页 文献库文献详情
PMID: 41889751 已发表 · epublish 英语

N‑Azidoacetylglucosamine (GlcNAz)-Derived Sugar Oxazolines as a New Class of Substrates for Chemoenzymatic Site-Specific Antibody Bioconjugation.

JACS Au ·第 6 卷 ·第 3 期 ·2026-03-23

Zong G, Gomozkova M, Azzam T, Sundberg EJ, Wang LX

摘要

Endoglycosidase-catalyzed Fc glycan remodeling using glycan oxazolines as substrates has become a general method to produce homogeneous antibody glycoforms and site-specific antibody-drug conjugates (ADCs). While endoglycosidases generally tolerate structural modifications at nonreducing terminal sugar moieties, the reducing-terminal GlcNAc oxazoline has been regarded as an essential and largely immutable structural motif for enzyme recognition. In this work, we sought to better understand substrate recognition by endoglycosidases and to develop simpler and more efficient strategies for synthesizing site-specific ADCs. We have performed site-selective modifications on the GlcNAc oxazoline moiety concurrent with structure-activity relationship (SAR) studies. We found that while the endoglycosidase Endo-S2 does not tolerate modifications at the C-3 or C-6 positions, the enzyme can tolerate certain modifications at the methyl group of the oxazoline portion, allowing the introduction of azide and halogen atoms at this site. In contrast to the conventional method of introducing tags to the nonreducing terminal glycans through ether bonds, which requires tedious protection-deprotection steps, this new strategy enables the one-step introduction of a tag (e.g., azide) to the reducing-terminal glucosamine moiety while leaving free hydroxyl groups on other positions intact. This approach significantly enhances the efficiency of the ADC preparation. These findings open a new avenue to antibody tagging and bioconjugation with a class of much simpler disaccharide substrates. In addition, we found that a second sugar moiety β-1,4-linked to the GlcNAc oxazoline also played an important role, with the mannose moiety being the most efficient for enzymatic transglycosylation. A structural modeling analysis indicated that there was a cavity in the enzyme pocket that permits certain modifications at the methyl group. This new method was successfully used to produce site-specific ADCs. Cell-based assays showed that the resulting ADCs exhibited potent cell killing of cancer cells that overexpressed the corresponding antigen.

关键词
Fc glycosylation N-azidoacetylglucosamine antibody−drug conjugates bioconjugation endoglycosidase enzymatic glycoengineering sugar oxazoline transglycosylation
文献信息
期刊
JACS Au
期刊简称
JACS Au
ISSN
2691-3704
发表日期
2026-03-23
语言
英语
国家/地区
United States
NLM ID
101775714
分析服务
分析服务

联系地址

山东省济南市章丘区文博路2号

齐鲁师范学院 genelibs生信实验室

山东省济南市高新区舜华路750号

大学科技园北区F座4单元2楼

电话: 0531-88819269

微信公众号

关注微信订阅号,实时查看信息,关注医学生物学动态。


商务邮箱

E-mail: product@genelibs.com