Institute for Biology and Biotechnology of Plants, University of Muenster, Schlossplatz 8, 48143 Münster, Germany.
Carbohydr Polym. 2017 Oct 15;174:1121-1128. doi: 10.1016/j.carbpol.2017.07.001. Epub 2017 Jul 18.
The biological activities of partially acetylated chitosan oligosaccharides (paCOS) depend on their degree of polymerization (DP), fraction of acetylation (F), and potentially their pattern of acetylation (P). Therefore, analyzing structure-function relationships require fully defined paCOS, but these are currently unavailable. A promising approach for obtaining at least partially defined paCOS is using chitosanolytic enzymes. Here we purified and characterized a novel chitosan-hydrolyzing enzyme from the fungus Alternaria alternata possessing an absolute cleavage specificity, yielding fully defined paCOS. It cleaves specifically after GlcN-GlcNAc pairs and is most active towards moderately acetylated chitosans, but shows no activity against fully acetylated or fully deacetylated substrates. These unique properties match neither those of chitinases nor chitosanases. Therefore, the enzyme represents the first member of a new class of chitosanolytic enzymes that will allow for the production of fully defined paCOS. Additionally, it represents a highly valuable tool for fingerprinting analyses of chitosan polymers.
部分乙酰化壳寡糖(paCOS)的生物活性取决于其聚合度(DP)、乙酰化度(F),以及潜在的乙酰化模式(P)。因此,分析结构-功能关系需要完全定义的 paCOS,但目前还没有这种物质。获得至少部分定义的 paCOS 的一种很有前途的方法是使用壳聚糖酶。在这里,我们从真菌链格孢属中纯化并鉴定了一种新型的壳聚糖水解酶,它具有绝对的切割特异性,可产生完全定义的 paCOS。它特异性地在 GlcN-GlcNAc 对后切割,对中度乙酰化的壳聚糖最活跃,但对完全乙酰化或完全脱乙酰化的底物没有活性。这些独特的性质既不符合几丁质酶的性质,也不符合壳聚糖酶的性质。因此,该酶代表了一类新型壳聚糖水解酶的第一个成员,它将允许生产完全定义的 paCOS。此外,它还是壳聚糖聚合物指纹分析的极具价值的工具。