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人工级联转化生物系统通过更明智的琼脂糖利用实现一锅法生物制造奇数新琼寡糖和 d-塔格糖。

Artificial Cascade Transformation Biosystem for One-Pot Biomanufacturing of Odd-Numbered Neoagarooligosaccharides and d-Tagatose through Wiser Agarose Utilization.

机构信息

State Key Laboratory of Marine Food Processing and Safety Control, College of Food Science and Engineering, Ocean University of China, Qingdao 266404, PR China.

Qingdao Key Laboratory of Food Biotechnology, Qingdao 266404, PR China.

出版信息

J Agric Food Chem. 2024 Nov 27;72(47):26339-26347. doi: 10.1021/acs.jafc.4c08619. Epub 2024 Nov 15.

Abstract

The application of agarose oligosaccharides has garnered great attention, with their biological activities varying among different structures. However, it still meets a great bottleneck for the targeted production of odd-numbered neoagarooligosaccharides (NAOSs), such as neoagarotriose (NA3), due to the lack of one-step hydrolases. In this work, the α-agarase AgaA33 and β-galactosidase BgaD were synergistically used to prepare NA3 with agarose as a substrate. Additionally, an l-arabinose isomerase CaLAI from was characterized to valorize low-value byproducts (d-galactose) by forming d-tagatose, which exhibited good thermal stability without the need for additional metal ions. Under the optimal reaction conditions, the production of NA3 and d-galactose catalyzed by these three enzymes was 0.40 and 0.15 g/L, respectively. The artificial three-enzyme-based cascade transformation system not only achieved the highest production of NA3 until now but also allowed for the valorization of d-galactose, providing a wiser application route for agarose utilization.

摘要

琼寡糖的应用引起了广泛关注,其不同结构的生物活性也存在差异。然而,由于缺乏一步水解酶,仍然存在针对奇数新琼寡糖(NAOSs)如 neoagarotriose(NA3)的靶向生产的巨大瓶颈。在这项工作中,协同使用 α-琼胶酶 AgaA33 和 β-半乳糖苷酶 BgaD 以琼脂糖为底物制备 NA3。此外,还对来自 的 l-阿拉伯糖异构酶 CaLAI 进行了表征,以通过形成 d-塔格糖来增值低价值的副产物(d-半乳糖),其表现出良好的热稳定性,无需额外的金属离子。在最佳反应条件下,这三种酶催化生成的 NA3 和 d-半乳糖的产量分别为 0.40 和 0.15 g/L。基于人工三酶级联转化系统不仅实现了迄今为止 NA3 的最高产量,而且还实现了 d-半乳糖的增值,为琼脂糖的利用提供了更明智的应用途径。

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