Akiyama K, Kawazu K, Kobayashi A
Department of Agricultural Science, Okayama University, Japan.
Carbohydr Res. 1995 Dec 27;279:151-60. doi: 10.1016/0008-6215(95)00288-x.
N,N',N"-Tri(monochloro)acetylchitotriose prepared by N-monochloroacetylation of chitotriose trihydrochloride was successfully polymerized into higher-molecular-weight oligomers by a lysozyme-catalyzed transglycosylation reaction, and a following base-catalyzed N-demonochloroacetylation gave a chitosan oligomer mixture mainly composed of oligomers with dp > 6. Partially N-deacetylated chitin oligomers (DAC oligomers) with dp 4-12 were synthesized by the enzyme reaction using N,N',N"-tri(monochloro)acetylchitotriose and N,N',N"-triacetylchitotriose (chitin trimer) as initial substrates followed by N-demonochloroacetylation. The structures of synthetic oligomers were analyzed by 1H NMR spectroscopy, enzymatic hydrolysis and nitrous acid deamination-NaBH4 reduction treatment. The dp of synthetic oligomers was measured by MALDI TOF MS (matrix-assisted laser desorption ionization time-of-flight mass spectrometry) using per-N-acetylated derivatives. The synthetic chitosan and DAC oligomers were strong elicitors for phytoalexin induction in Pisum sativum and Phaseolus vulgaris. This chemo-enzymatic method utilizing N-acylated chitotrioses as substrates is a novel approach to the synthesis of high-molecular-weight chitosan oligomers and DAC oligomers of biological importance.
通过对壳三糖三盐酸盐进行N-单氯乙酰化制备的N,N',N"-三(单氯)乙酰壳三糖,经溶菌酶催化的转糖基化反应成功聚合成更高分子量的低聚物,随后进行碱催化的N-脱单氯乙酰化反应,得到了主要由聚合度大于6的低聚物组成的壳聚糖低聚物混合物。以N,N',N"-三(单氯)乙酰壳三糖和N,N',N"-三乙酰壳三糖(壳三糖)为起始底物,通过酶反应合成了聚合度为4-12的部分N-脱乙酰化甲壳素低聚物(DAC低聚物),随后进行N-脱单氯乙酰化反应。通过1H NMR光谱、酶促水解和亚硝酸脱氨-NaBH4还原处理对合成低聚物的结构进行了分析。使用全N-乙酰化衍生物,通过基质辅助激光解吸电离飞行时间质谱(MALDI TOF MS)测定合成低聚物的聚合度。合成的壳聚糖和DAC低聚物是豌豆和菜豆中植物抗毒素诱导的强诱导剂。这种以N-酰化壳三糖为底物的化学酶法是合成具有生物学重要性的高分子量壳聚糖低聚物和DAC低聚物的新方法。