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Constitutive expression and cell-surface display of a bacterial β-mannanase in Lactobacillus plantarum

机译:植物乳杆菌中细菌β-甘露聚糖酶的组成型表达和细胞表面展示

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Lactic acid bacteria (LAB) are important microorganisms in the food and beverage industry. Due to their food-grade status and probiotic characteristics, several LAB are considered as safe and effective cell-factories for food-application purposes. In this present study, we aimed at constitutive expression of a mannanase from Bacillus licheniformis DSM13, which was subsequently displayed on the cell surface of Lactobacillus plantarum WCFS1, for use as whole-cell biocatalyst in oligosaccharide production. Two strong constitutive promoters, Pgm and SlpA, from L. acidophilus NCFM and L. acidophilus ATCC4356, respectively, were used to replace the inducible promoter in the lactobacillal pSIP expression system for the construction of constitutive pSIP vectors. The mannanase-encoding gene (manB) was fused to the N-terminal lipoprotein anchor (Lp_1261) from L. plantarum and the resulting fusion protein was cloned into constitutive pSIP vectors and expressed in L. plantarum WCFS1. The localization of the protein on the bacterial cell surface was confirmed by flow cytometry and immunofluorescence microscopy. The mannanase activity and the reusability of the constructed L. plantarum displaying cells were evaluated. The highest mannanase activities on the surface of L. plantarum cells obtained under the control of the Pgm and SlpA promoters were 1200 and 3500?U/g dry cell weight, respectively, which were 2.6- and 7.8-fold higher compared to the activity obtained from inducible pSIP anchoring vectors. Surface-displayed mannanase was shown to be able to degrade galactomannan into manno-oligosaccharides (MOS). This work demonstrated successful displaying of ManB on the cell surface of L. plantarum WCFS1 using constitutive promoter-based anchoring vectors for use in the production of manno-oligosaccharides, which are potentially prebiotic compounds with health-promoting effects. Our approach, where the enzyme of interest is displayed on the cell surface of a food-grade organism with the use of strong constitutive promoters, which continuously drive synthesis of the recombinant protein without the need to add an inducer or change the growth conditions of the host strain, should result in the availability of safe, stable food-grade biocatalysts.
机译:乳酸菌(LAB)是食品和饮料行业中的重要微生物。由于它们具有食品级状态和益生菌特性,因此几种LAB被认为是用于食品应用的安全有效的细胞工厂。在本研究中,我们旨在从地衣芽孢杆菌DSM13中组成甘露聚糖酶的组成型表达,随后将其显示在植物乳杆菌WCFS1的细胞表面上,用作寡糖生产中的全细胞生物催化剂。分别使用嗜酸乳杆菌NCFM和嗜酸乳杆菌ATCC4356的两个强组成型启动子Pgm和SlpA替代乳杆菌pSIP表达系统中的诱导型启动子,以构建组成型pSIP载体。将甘露聚糖酶编码基因(manB)与来自植物乳杆菌的N末端脂蛋白锚(Lp_1261)融合,并将得到的融合蛋白克隆到组成型pSIP载体中并在植物乳杆菌WCFS1中表达。通过流式细胞术和免疫荧光显微镜检查证实了蛋白质在细菌细胞表面上的定位。评价了构建的植物乳杆菌展示细胞的甘露聚糖酶活性和可重复使用性。在Pgm和SlpA启动子的控制下获得的植物乳杆菌细胞表面的最高甘露聚糖酶活性分别为1200和3500?U / g干细胞重量,分别比获得的活性高2.6和7.8倍。来自诱导型pSIP锚定载体。表面展示的甘露聚糖酶被证明能够将半乳甘露聚糖降解为甘露寡糖(MOS)。这项工作证明了使用基于组成型启动子的锚定载体成功地在植物乳杆菌WCFS1的细胞表面上展示ManB,用于生产甘露寡糖,甘露寡糖可能是具有健康促进作用的益生元化合物。我们的方法是使用强大的组成型启动子将感兴趣的酶展示在食品级生物的细胞表面,该启动子可连续驱动重组蛋白的合成,而无需添加诱导剂或改变其生长条件。宿主菌株,应导致可获得安全,稳定的食品级生物催化剂。

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