Faculty of Chemistry, Biotechnology, and Food Science, The Norwegian University of Life Sciences, Ås, 1432, Norway.
College of Life Sciences University of Dundee, Dow Street, Dundee, DD1 5EH, Scotland, United Kingdom.
Sci Rep. 2017 May 11;7(1):1746. doi: 10.1038/s41598-017-02043-1.
Enzymatic conversion of chitin, a β-1,4 linked polymer of N-acetylglucosamine, is of major interest in areas varying from the biorefining of chitin-rich waste streams to understanding how medically relevant fungi remodel their chitin-containing cell walls. Although numerous chitinolytic enzymes have been studied in detail, relatively little is known about enzymes capable of deacetylating chitin. We describe the structural and functional characterization of a 237 residue deacetylase (AnCDA) from Aspergillus nidulans FGSC A4. AnCDA acts on chito-oligomers, crystalline chitin, chitosan, and acetylxylan, but not on peptidoglycan. The K and k of AnCDA for the first deacetylation of penta-N-acetyl-chitopentaose are 72 µM and 1.4 s, respectively. Combining mass spectrometry and analyses of acetate release, it was shown that AnCDA catalyses mono-deacetylation of (GlcNAc) and full deacetylation of (GlcNAc) in a non-processive manner. Deacetylation of the reducing end sugar was much slower than deacetylation of the other sugars in chito-oligomers. These enzymatic characteristics are discussed in the light of the crystal structure of AnCDA, providing insight into how the chitin deacetylase may interact with its substrates. Interestingly, AnCDA activity on crystalline chitin was enhanced by a lytic polysaccharide monooxygenase that increases substrate accessibility by oxidative cleavage of the chitin chains.
壳聚糖是一种 N-乙酰葡萄糖胺通过β-1,4 键连接而成的聚合物,其酶法转化在多个领域具有重要意义,包括从富含壳聚糖的废物生物精炼到了解医学相关真菌如何重塑其含壳聚糖的细胞壁。尽管已经对许多壳聚糖酶进行了详细研究,但对于能够去乙酰化壳聚糖的酶知之甚少。我们描述了来自 Aspergillus nidulans FGSC A4 的 237 个残基去乙酰酶(AnCDA)的结构和功能特征。AnCDA 作用于壳寡糖、结晶壳聚糖、壳聚糖和乙酰木聚糖,但不作用于肽聚糖。AnCDA 对五乙酰壳五糖的第一次去乙酰化的 K 和 k 分别为 72µM 和 1.4s。通过质谱和醋酸盐释放分析表明,AnCDA 以非连续方式催化(GlcNAc)的单去乙酰化和(GlcNAc)的完全去乙酰化。寡糖中还原端糖的去乙酰化速度比其他糖慢得多。这些酶学特性结合 AnCDA 的晶体结构进行了讨论,深入了解了该壳聚糖去乙酰酶如何与其底物相互作用。有趣的是,结晶壳聚糖上的 AnCDA 活性被一种溶细胞多糖单加氧酶增强,该酶通过氧化裂解壳聚糖链增加了底物的可及性。