Department of Bioscience and Biotechnology, Dalian University of Technology, Dalian 116024, China.
Insect Sci. 2013 Apr;20(2):147-57. doi: 10.1111/j.1744-7917.2012.01512.x. Epub 2012 Jun 12.
Chitinase catalyzes β-1,4-glycosidic linkages in chitin and has attracted research interest due to it being a potential pesticide target and an enzymatic tool for preparation of N-acetyl-β-D-glucosamine. An individual insect contains multiple genes encoding chitinases, which vary in domain architectures, expression patterns, physiological roles and biochemical properties. Herein, OfCht5, the glycoside hydrolase family 18 chitinase from the widespread lepidopteran pest Ostrinia furnacalis, was cloned, expressed in the yeast Pichia pastoris and biochemically characterized in an attempt to facilitate both pest control and biomaterial preparation. Complementary DNA sequence analysis indicated that OfCHT5 consisted of an open reading frame of 1 665-bp nucleotides. Phylogenic analysis suggested OfCht5 belongs to the Group I insect chitinases. Expression of OfCht5 in Pichia pastoris resulted in highest specific activity after 120 h of induction with methanol. Through two steps of purification, consisting of ammonium sulfate precipitation and metal chelating chromatography, about 7 mg of the recombinant OfCht5 was purified to homogeneity from 1 L culture supernatant. OfCht5 effectively converted colloidal chitin into chitobiose, but had relatively low activity toward α-chitin. When chitooligosaccharides [(GlcNAc)n , n= 3-6] were used as substrates, OfCht5 was observed to possess the highest catalytic efficiency parameter toward (GlcNAc)4 and predominantely hydrolyzed the second glycosidic bond from the non-reducing end. Together with β-N-acetyl-D-hexosaminidase OfHex1, OfCht5 achieved its highest efficiency in chitin degradation that yielded N-acetyl-β-D-glucosamine, a valuable pharmacological reagent and food supplement, within a molar concentration ratio of OfCht5 versus OfHex1 in the range of 9 : 1-15 : 1. This work provides an alternative to existing preparation of chitinase for pesticides and other applications.
几丁质酶催化几丁质中的β-1,4-糖苷键,由于它是潜在的杀虫剂靶标和制备 N-乙酰-β-D-葡萄糖胺的酶工具,因此引起了研究兴趣。昆虫个体中含有多种编码几丁质酶的基因,这些基因在结构域、表达模式、生理功能和生化特性上存在差异。本文从广泛分布的鳞翅目害虫烟夜蛾(Ostrinia furnacalis)中克隆了糖苷水解酶家族 18 几丁质酶 OfCht5,并在毕赤酵母中表达,对其进行了生化特性分析,旨在促进害虫防治和生物材料制备。cDNA 序列分析表明,OfCHT5 由 1665 个核苷酸的开放阅读框组成。系统发育分析表明,OfCht5 属于 Group I 昆虫几丁质酶。甲醇诱导 120 h 后,OfCht5 在毕赤酵母中的表达活性最高。通过两步纯化,即硫酸铵沉淀和金属螯合层析,从 1 L 培养上清液中约纯化出 7 mg 纯的重组 OfCht5。OfCht5 能有效地将胶体几丁质转化为壳二糖,但对 α-几丁质的活性较低。当壳寡糖[(GlcNAc)n, n=3-6]作为底物时,OfCht5 对(GlcNAc)4 的催化效率参数最高,并且主要从非还原端水解第二个糖苷键。与β-N-乙酰-D-己糖胺酶 OfHex1 一起,OfCht5 在几丁质降解中达到最高效率,在摩尔浓度比为 OfCht5 与 OfHex1 比值为 9∶1-15∶1 时,生成有价值的药理学试剂和食品补充剂 N-乙酰-β-D-葡萄糖胺。这项工作为现有几丁质酶的制备提供了一种替代方法,可用于杀虫剂和其他应用。