Preparation and characterization of immobilized mannanase on polyhydroxyalkanoate (PHA).

IF 4.3 3区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Zhiyue Men, Yafei Zhang, Zhao Pang, Tao Li, Hening Zhang, Yue Zhou, Ning Hao, Yajian Song, Yu Bai
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Abstract

Galactomannan oligosaccharides (GMOS), composed of 2-10 mannose units linked with β-1, 4 glycosidic bond as the main chain and galactose linked with α-1, 6 glycosidic bond as the side chain, are crucial for probiotic food synthesis due to their ability to promote the growth and activity of beneficial intestinal microbiota, enhance the host immune system, and improve nutrient digestion. GMOS is usually obtained by hydrolyzing plants such as locust bean gum and guar gum with mannanase. β-mannanase ManA from Alkaliphilic Bacillus sp. N16-5 can hydrolyze β-1, 4 glycosidic bond of galactomannan. In this study, an immobilization system was employed utilizing polyhydroxyalkanoate (PHA) biopolymers, which naturally have an affinity mainly mediated by hydrophobic interaction for PhaP protein. Fusion protein combining ManA with PhaP from Aeromonas hydrophila, was subsequently immobilized on PHA support to form a multi-enzyme complex, facilitating the hydrolysis of locust bean gum to generate GMOS. This immobilized enzyme enhances enzyme stability and reusability, can be reused up to 32 times while maintaining ~ 80% of its activity, offering substantial cost savings through in-situ enzyme and product separation. Additionally, the different PHA forms were developed to hydrolyze locust bean gum to produce GMOS, such as nano PHA particles, PHA electrospun materials, while these preliminary investigations show promise, further research is needed to optimize their performance and practical application.

聚羟基烷酸酯(PHA)固定化甘露聚糖酶的制备与表征。
半乳甘露聚糖寡糖(Galactomannan oligosaccharides, GMOS)由2-10个以β- 1,4糖苷键连接的甘露糖单元为主链,以α- 1,6糖苷键连接的半乳糖为侧链组成,具有促进肠道有益菌群生长和活性、增强宿主免疫系统和改善营养物质消化的作用,是益生菌食品合成的重要原料。转基因生物通常是通过用甘露聚糖酶水解刺槐豆胶和瓜尔胶等植物获得的。来自嗜碱芽孢杆菌N16-5的β-甘露聚糖酶ManA可以水解半乳甘露聚糖的β- 1,4糖苷键。在本研究中,利用聚羟基烷酸酯(PHA)生物聚合物构建了一种固定化体系,该体系主要通过疏水相互作用介导PHA蛋白的天然亲和力。将na与嗜水气单胞菌PhaP结合的融合蛋白固定在PHA载体上形成多酶复合物,促进刺槐豆胶水解生成转基因生物。这种固定化酶提高了酶的稳定性和可重复使用性,可重复使用32次,同时保持约80%的活性,通过原位酶和产物分离节省了大量成本。此外,还开发了不同形式的PHA,以水解刺槐豆胶生产转基因生物,如纳米PHA颗粒,PHA电纺材料,这些初步研究显示了前景,但需要进一步研究以优化其性能和实际应用。
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来源期刊
Bioresources and Bioprocessing
Bioresources and Bioprocessing BIOTECHNOLOGY & APPLIED MICROBIOLOGY-
CiteScore
7.20
自引率
8.70%
发文量
118
审稿时长
13 weeks
期刊介绍: Bioresources and Bioprocessing (BIOB) is a peer-reviewed open access journal published under the brand SpringerOpen. BIOB aims at providing an international academic platform for exchanging views on and promoting research to support bioresource development, processing and utilization in a sustainable manner. As an application-oriented research journal, BIOB covers not only the application and management of bioresource technology but also the design and development of bioprocesses that will lead to new and sustainable production processes. BIOB publishes original and review articles on most topics relating to bioresource and bioprocess engineering, including: -Biochemical and microbiological engineering -Biocatalysis and biotransformation -Biosynthesis and metabolic engineering -Bioprocess and biosystems engineering -Bioenergy and biorefinery -Cell culture and biomedical engineering -Food, agricultural and marine biotechnology -Bioseparation and biopurification engineering -Bioremediation and environmental biotechnology
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