Prabhakar Vikas, Capila Ishan, Sasisekharan Ram
Division of Biological Engineering, Massachusetts Institute of Technology, Cambridge, MA, USA.
Methods Mol Biol. 2009;534:147-56. doi: 10.1007/978-1-59745-022-5_11.
There is accumulating evidence of the importance of linear polysaccharides in modulating biological phenomena in both the normal and the diseased states. This layer of regulation results from interactions between polysaccharides and other biomolecules, such as proteins, at the cell-extracellular matrix interface. The specific sequence of chemical modifications within the polymer backbone imparts a potential for interaction with other molecular species, and thus there exists important information within the various sulfation, acetylation, and epimerization states of such complex carbohydrates. A variety of factors have made the deciphering of this chemical code elusive. To this end, this report describes several techniques to elucidate the structural information inherent in glycosaminoglycan species. First, the use of depolymerizing enzymes that cleave polysaccharides at specific sites is described. Then, capillary electrophoretic (CE) techniques are employed to characterize the disaccharide species present in an enzymatically-cleaved polysaccharide sample. Mass spectrometry (MS) procedures can further be used to establish the length of an oligosaccharide chain and the presence of specific functional groups.
越来越多的证据表明,线性多糖在调节正常和疾病状态下的生物现象方面具有重要作用。这种调节层面源于多糖与其他生物分子(如蛋白质)在细胞 - 细胞外基质界面的相互作用。聚合物主链内化学修饰的特定序列赋予了与其他分子物种相互作用的潜力,因此在这类复杂碳水化合物的各种硫酸化、乙酰化和差向异构化状态中存在重要信息。多种因素使得破解这种化学密码变得困难。为此,本报告描述了几种阐明糖胺聚糖物种中固有结构信息的技术。首先,介绍了使用能在特定位点切割多糖的解聚酶。然后,采用毛细管电泳(CE)技术来表征酶切多糖样品中存在的二糖物种。质谱(MS)程序可进一步用于确定寡糖链的长度和特定官能团的存在。