Programa de Processos Tecnológicos e Ambientais, Universidade de Sorocaba, Sorocaba, Brazil.
Biosciences Institute, Newcastle University, Newcastle Upon Tyne, England.
Biotechnol Lett. 2024 Apr;46(2):201-211. doi: 10.1007/s10529-023-03460-1. Epub 2024 Jan 27.
Apiosidases are enzymes that cleave the glycosidic bond between the monosaccharides linked to apiose, a branched chain furanose found in the cell walls of vascular plants and aquatic monocots. There is biotechnological interest in this enzyme group because apiose is the flavor-active compound of grapes, fruit juice, and wine, and the monosaccharide is found to be a plant secondary metabolite with pharmaceutical properties. However, functional and structural studies of this enzyme family are scarce. Recently, a glycoside hydrolase family member GH140 was isolated from Bacteroides thetaiotaomicron and identified as an endo-apiosidase.
The structural characterization and functional identification of a second GH140 family enzyme, termed MmApi, discovered through mangrove soil metagenomic approach, are described. Among the various substrates tested, MmApi exhibited activity on an apiose-containing oligosaccharide derived from the pectic polysaccharide rhamnogalacturonan-II. While the crystallographic model of MmApi was similar to the endo-apiosidase from Bacteroides thetaiotaomicron, differences in the shape of the binding sites indicated that MmApi could cleave apioses within oligosaccharides of different compositions.
This enzyme represents a novel tool for researchers interested in studying the physiology and structure of plant cell walls and developing biocatalytic strategies for drug and flavor production.
Apiosidases 是一种能够切割单糖之间糖苷键的酶,这些单糖通过支链呋喃糖 apiose 连接,而 apiose 存在于维管束植物和水生单子叶植物的细胞壁中。该酶组具有生物技术应用价值,因为 apiose 是葡萄、果汁和葡萄酒中具有风味活性的化合物,并且该单糖被发现是具有药用特性的植物次生代谢物。然而,该酶家族的功能和结构研究却很少。最近,从拟杆菌属中分离出一种糖苷水解酶家族成员 GH140,并被鉴定为内切 apiosidase。
通过红树林土壤宏基因组学方法发现了第二种 GH140 家族酶 MmApi,并对其进行了结构特征和功能鉴定。在测试的各种底物中,MmApi 对来源于果胶多糖鼠李半乳糖醛酸聚糖-II 的含有 apiose 的寡糖具有活性。尽管 MmApi 的晶体结构模型与拟杆菌属的内切 apiosidase 相似,但结合部位形状的差异表明,MmApi 可以切割不同组成的寡糖中的 apiose。
该酶为研究植物细胞壁的生理学和结构以及开发药物和风味生产的生物催化策略的研究人员提供了一种新的工具。