Simple Novel Assays in Glycobiology

S. Oppenheimer
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Abstract

In response to an invitation from this journal, I am providing this mini-review of recent work from the Oppenheimer lab. Over the past 4 decades we have developed many assays that help us examine the role of specifc glycans in cellular interactions. Recently we have used two model systems for this work, the sea urchin embryo and yeast (Saccharomyces cerevisiae). We have developed two assays using the sea urchin embryo. One involves a microplate method where living sea urchin embryos are incubated with specific glycans or glycosidases. A specific set of cellular interactions, development of the primitive gut…archenteron, is examined over time in the presence and absence of the sugars or enzymes in living embryos. L-rhamnose and polyglucans have been identified as playing a role in mediating these cellular interactions. The second assay involves microdissection of the primitive gut away from the blastocoel roof to which it adheres. Using independently characterized glycosidases, we showed that polyglucans appear to mediate this cellular interaction. In the second system using yeast, we examine yeast disaggregation from lectin-derivatized agarose beads in the presence and absence of specific glycans using a quantitative, kinetic graphic profile assay. We found that D-melezitose was the best adhesion inhibitor and may be therapeutically useful in anti-adhesion venues of pathogen binding to cells and in cancer cell binding.
糖生物学中简单新颖的检测方法
应该杂志的邀请,我提供了这篇关于奥本海默实验室最近工作的小综述。在过去的40年里,我们已经开发了许多检测方法来帮助我们检查特定聚糖在细胞相互作用中的作用。最近我们使用了两个模型系统,海胆胚胎和酵母(Saccharomyces cerevisiae)。我们利用海胆胚胎进行了两种试验。其中一种方法涉及微孔板法,即用特定的聚糖或糖苷酶孵育活海胆胚胎。一组特定的细胞相互作用,原始肠道的发育,在活胚胎中存在和缺乏糖或酶的情况下,随着时间的推移被检查。l -鼠李糖和葡聚糖已被确定在介导这些细胞相互作用中起作用。第二种方法是对原始肠道进行显微解剖,使其远离附着的囊胚顶。使用独立表征的糖苷酶,我们发现多葡聚糖似乎介导了这种细胞相互作用。在第二个系统使用酵母,我们检查酵母从凝集素衍生琼脂糖珠在存在和不存在的特定聚糖使用定量,动力学图形分析。我们发现D-melezitose是最好的粘附抑制剂,可能在病原体与细胞结合的抗粘附场所和癌细胞结合中具有治疗作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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