Bohorov Ognian, Andersson-Sand Hillevi, Hoffmann Julia, Blixt Ola
Glycan Array Synthesis Core D, Consortium for Functional Glycomics, Department of Molecular Biology, The Scripps Research Institute, CB 248A 10550 N, Torrey Pines Road, La Jolla, CA 92037, USA.
Glycobiology. 2006 Dec;16(12):21C-27C. doi: 10.1093/glycob/cwl044. Epub 2006 Sep 12.
Glycan array development is limited by the complexity of efficiently generating derivatives of free reducing glycans with primary amines or other functional groups. A novel bi-functional spacer with selective reactivity toward the free glycan and a second functionality, a primary amine, was synthesized. We demonstrated an efficient one-step derivatization of various glycans including naturally isolated N-glycans, O-glycans, milk oligosaccharides, and bacterial polysaccharides in microgram scale. No protecting group manipulations or activation of the anomeric center was required. To demonstrate its utility for glycan microarray fabrication, we compared glycans with different amine-spacers for incorporation onto an amine-reactive glass surface. Our study results revealed that glycans conjugated with this bi-functional linker were effectively printed and detected with various lectins and antibodies.
聚糖阵列的发展受到高效生成具有伯胺或其他官能团的游离还原聚糖衍生物的复杂性的限制。合成了一种对游离聚糖具有选择性反应性且具有第二种官能团(伯胺)的新型双功能间隔臂。我们展示了在微克规模上对包括天然分离的N-聚糖、O-聚糖、乳寡糖和细菌多糖在内的各种聚糖进行高效一步衍生化。无需对异头中心进行保护基操作或活化。为了证明其在聚糖微阵列制造中的效用,我们比较了带有不同胺间隔臂的聚糖在胺反应性玻璃表面上的掺入情况。我们的研究结果表明,与这种双功能连接子缀合的聚糖能够有效地打印出来,并用各种凝集素和抗体进行检测。