Rothenberg B E, Hayes B K, Toomre D, Manzi A E, Varki A
Glycobiology Program, University of California, San Diego Cancer Center, La Jolla.
Proc Natl Acad Sci U S A. 1993 Dec 15;90(24):11939-43. doi: 10.1073/pnas.90.24.11939.
Fluorescent tagging of free oligosaccharides by reductive amination permits sensitive detection and fractionation of these molecules. To expand the scope of this approach, we have synthesized a fluorescent reagent, 2-amino-(6-amidobiotinyl)pyridine. This reagent can tag oligosaccharides under nondegradative conditions with high efficiency. The resulting adducts show excellent fractionation by reverse-phase HPLC with sensitive detection in the low picomole range. When combined with sequential exoglycosidase digestion, stepwise sequencing of the sugar chains is possible. The biotinyl group can also be used to recover the sugar chain from reaction mixtures. The high-affinity interaction of the biotinyl group with multivalent avidin or streptavidin can be used to create the functional equivalent of neoglycoproteins carrying multiple copies of oligosaccharides of defined structure. These complexes allow the production of IgG antibodies directed against the oligosaccharide chain. They can also harness the power of (strept)avidin-biotin technology for the detection and isolation of oligosaccharide-specific receptors from native sources of recombinant libraries.
通过还原胺化对游离寡糖进行荧光标记可实现对这些分子的灵敏检测和分级分离。为了扩大这种方法的应用范围,我们合成了一种荧光试剂2-氨基-(6-氨基生物素基)吡啶。该试剂能够在非降解条件下高效标记寡糖。所得加合物通过反相高效液相色谱实现了出色的分级分离,并在低皮摩尔范围内实现了灵敏检测。与外切糖苷酶的顺序消化相结合时,糖链的逐步测序成为可能。生物素基团还可用于从反应混合物中回收糖链。生物素基团与多价抗生物素蛋白或链霉抗生物素蛋白的高亲和力相互作用可用于创建携带多个特定结构寡糖拷贝的新糖蛋白的功能等效物。这些复合物可用于生产针对寡糖链的IgG抗体。它们还可以利用(链霉)抗生物素蛋白-生物素技术的强大功能,从天然来源或重组文库中检测和分离寡糖特异性受体。