The Discovery, Molecular Cloning, and Characterization of Dextransucrase LmDexA and Its Active Truncated Mutant from Leuconostoc mesenteroides NN710

Author:

Zuo Xiaoqiong1,Pan Lixia1ORCID,Zhang Wenchao1,Zhu Jing2,Qin Yan1,Xu Xiuying1,Wang Qingyan1

Affiliation:

1. National Key Laboratory of Non-Food Biomass Energy Technology, Guangxi Academy of Sciences, Nanning 530007, China

2. College of Food and Quality Engineering, Nanning University, Nanning 530200, China

Abstract

Dextransucrases play a crucial role in the production of dextran from economical sucrose; therefore, there is a pressing demand to explore novel dextransucrases with better performance. This study characterized a dextransucrase enzyme, LmDexA, which was identified from the Leuconostoc mesenteroides NN710. This bacterium was isolated from the soil of growing dragon fruit in Guangxi province, China. We successfully constructed six different N-terminal truncated variants through sequential analysis. Additionally, a truncated variant, ΔN190LmDexA, was constructed by removing the 190 amino acids fragment from the N-terminal. This truncated variant was then successfully expressed heterologously in Escherichia coli and purified. The purified ΔN190LmDexA demonstrated optimal hydrolysis activity at a pH of 5.6 and a temperature of 30 °C. Its maximum specific activity was measured to be 126.13 U/mg, with a Km of 13.7 mM. Results demonstrated a significant improvement in the heterologous expression level and total enzyme activity of ΔN190LmDexA. ΔN190LmDexA exhibited both hydrolytic and transsaccharolytic enzymatic activities. When sucrose was used as the substrate, it primarily produced high-molecular-weight dextran (>400 kDa). However, upon the addition of maltose as a receptor, it resulted in the production of a significant amount of oligosaccharides. Our results can provide valuable information for enhancing the characteristics of recombinant dextransucrase and potentially converting sucrose into high-value-added dextran and oligosaccharides.

Funder

National Natural Science Foundation of China

Guangxi Science and Technology Program

Central Guidance on Local Science and Technology Development Fund of Guangxi Province

Publisher

MDPI AG

Reference47 articles.

1. The Carbohydrate-Active EnZymes database (CAZy): An expert resource for Glycogenomics;Cantarel;Nucleic Acids Res.,2009

2. Inventory of the GH70 enzymes encoded by Leuconostoc citreum NRRL B-1299—Identification of three novel alpha-transglucosylases;Passerini;FEBS J.,2015

3. An alpha-1,6-and alpha-1,3-linked glucan produced by Leuconostoc citreum ABK-1 alternansucrase with nanoparticle and film-forming properties;Wangpaiboon;Sci. Rep.,2018

4. Mechanisms in the glucansucrase synthesis of polysaccharides and oligosaccharides from sucrose;Robyt;Adv. Carbohydr. Chem. Biochem.,1995

5. Identification of a 1,3-α glucosyltransferase involved in insoluble glucan synthesis by a serotype c strain of Streptococcus mutans;Kenney;FEMS Microbiol. Lett.,1983

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