Department of Chemistry, University of Natural Resources and Life Sciences-Vienna, Muthgasse 18, Wien, A-1190, Vienna, Austria.
Faculty of Health Sciences and Department of Molecular Biology & Biochemistry, Simon Fraser University, Burnaby, British Columbia, V5A1S6, Canada.
Chembiochem. 2022 Apr 5;23(7):e202200061. doi: 10.1002/cbic.202200061. Epub 2022 Feb 11.
Oligomannose-type glycans on the spike protein of HIV-1 constitute relevant epitopes to elicit broadly neutralizing antibodies (bnAbs). Herein we describe an improved synthesis of α- and β-linked hepta- and nonamannosyl ligands that were subsequently converted into BSA and CRM neoglycoconjugates. We assembled the ligands from anomeric 3-azidopropyl spacer glycosides from select 3-O-protected thiocresyl mannoside donors. Chain extensions were achieved using [4+3] or [4+5] block synthesis of thiocresyl and trichloroacetimidate glycosyl donors. Subsequent global deprotection generated the 3-aminopropyl oligosaccharide ligands. ELISA binding data obtained with the β-anomeric hepta- and nonamannosyl conjugates with a selection of HIV-1 bnAbs showed comparable binding of both mannosyl ligands by Fab fragments yet lesser binding of the nonasaccharide conjugate by the corresponding IgG antibodies. These results support previous observations that a complete Man structure might not be the preferred antigenic binding motif for some oligomannose-specific antibodies, and have implications for glycoside designs to elicit oligomannose-targeted HIV-1-neutralizing antibodies.
HIV-1 刺突蛋白上的寡甘露糖型聚糖构成了引发广泛中和抗体(bnAbs)的相关表位。在此,我们描述了一种改进的 α-和 β-连接的七甘露糖和九甘露糖配体的合成方法,这些配体随后被转化为 BSA 和 CRM 糖缀合物。我们从选定的 3-O-保护的硫代肉桂基甘露糖苷供体的非对映立体选择性 3-叠氮丙基间隔基糖苷组装配体。通过硫代肉桂基和三氯乙酰亚胺基糖苷供体的 [4+3] 或 [4+5] 块合成实现链延伸。随后的全局脱保护生成 3-氨基丙基寡糖配体。用一系列 HIV-1 bnAbs 对β-非对映异构体七甘露糖和九甘露糖缀合物进行 ELISA 结合数据表明,Fab 片段对两种甘露糖配体的结合相似,但相应 IgG 抗体对九糖缀合物的结合较弱。这些结果支持了先前的观察结果,即完整的 Man 结构可能不是某些寡甘露糖特异性抗体的首选抗原结合基序,并对设计寡甘露糖靶向 HIV-1 中和抗体的糖苷具有启示意义。