School of Chemistry, National University of Ireland, Galway, University Road, Galway, Ireland.
Glycobiology. 2014 Jan;24(1):17-25. doi: 10.1093/glycob/cwt083. Epub 2013 Sep 20.
Changes in cell-surface glycan patterns are markers of the presence of many different disease and cancer types, offering a relatively untapped niche for glycan-targeting reagents and therapeutics in diagnosis and treatment. Of paramount importance for the success of any glycan-targeting reagent is the ability to specifically recognize the target among the plethora of different glycans that exist in the human body. The preeminent technique for defining specificity is glycan array screening, in which a glycan-binding protein (GBP) can be simultaneously screened against multiple glycans. Glycan array screening has provided unparalleled insight into GBP specificity, but data interpretation suffers from difficulties in identifying false-negative binding arising from altered glycan presentation, associated with the linker used to conjugate the glycan to the surface. In this work, we model the structure and dynamics of the linkers employed in the glycan arrays developed by the Consortium for Functional Glycomics. The modeling takes into account the physical presence and surface polarity of the array, and provides a structure-based rationalization of false-negative results arising from the so-called "linker effect." The results also serve as a guide for interpreting glycan array screening data in a biological context; in particular, we show that attempts to employ natural amino acids as linkers may be prone to unexpected artifacts compromising glycan recognition.
糖链模式的变化是许多不同疾病和癌症类型存在的标志物,为糖链靶向试剂和治疗方法在诊断和治疗中的应用提供了一个相对未开发的利基。对于任何糖链靶向试剂的成功,最重要的是能够在人体中存在的大量不同糖链中特异性识别目标。定义特异性的卓越技术是糖链阵列筛选,其中糖结合蛋白(GBP)可以同时针对多种糖进行筛选。糖链阵列筛选为 GBP 特异性提供了无与伦比的洞察力,但数据解释受到由于糖链呈现方式改变而导致的假阴性结合的困难的影响,这种改变与用于将糖连接到表面的接头有关。在这项工作中,我们对功能糖组学联盟开发的糖链阵列中使用的接头的结构和动力学进行建模。该模型考虑了阵列的物理存在和表面极性,并基于结构对所谓的“接头效应”引起的假阴性结果提供了合理化解释。这些结果还可作为在生物学背景下解释糖链阵列筛选数据的指南;特别是,我们表明,尝试使用天然氨基酸作为接头可能容易受到影响糖识别的意外伪影的影响。