Centre for Insoluble Protein Structures (inSPIN) and Interdisciplinary Nanoscience Centre (iNANO), Department of Chemistry, Aarhus University, 8000 Aarhus C, Denmark.
Biomacromolecules. 2010 Nov 8;11(11):3196-207. doi: 10.1021/bm100736w. Epub 2010 Oct 20.
Chitin and chitosan are naturally occurring polysaccharides composed of β-(1,4) linked N-acetylglucosamine units (GlcNAc) and, for chitosan, also glucosamine units (GlcN). In recent years, chitosan has attracted much interest because of its special physical and chemical properties related to drug delivery, wound healing, and tissue engineering. However, limited structural knowledge is available for chitosan because of its composition of the randomly mixed building blocks, GlcNAc and GlcN. In this study, we present exhaustive combined molecular dynamics and Monte Carlo simulations that unravel the conformational flexibility of the β-(1,4)-linkage in di-, tri-, and tetrasaccharide models of chitin and chitosan. The most flexible disaccharide unit was found to be GlcN-GlcNAc, populating four conformations. Furthermore, it is found that the conformational freedom of a glycosidic bond is independent of the flexibility of the neighboring linkages along the oligomer. The results are interpreted with respect to hydrogen bond formation and implications for polymer properties.
壳聚糖和几丁聚糖是由β-(1,4)连接的 N-乙酰葡萄糖胺单元(GlcNAc)组成的天然存在的多糖,对于壳聚糖,还包括葡萄糖胺单元(GlcN)。近年来,由于其与药物传递、伤口愈合和组织工程相关的特殊物理和化学性质,壳聚糖引起了广泛关注。然而,由于其组成是随机混合的单体 GlcNAc 和 GlcN,因此有关壳聚糖的结构知识有限。在这项研究中,我们进行了详尽的组合分子动力学和蒙特卡罗模拟,揭示了几丁质和壳聚糖的二糖、三糖和四糖模型中β-(1,4)-键的构象灵活性。发现最灵活的二糖单元是 GlcN-GlcNAc,可占据四种构象。此外,还发现糖苷键的构象自由度与其沿低聚物的相邻键的灵活性无关。结果根据氢键形成进行了解释,并对聚合物性质产生了影响。