Hubei Key Laboratory of Animal Nutrition and Feed Science, Wuhan Polytechnic University, Wuhan, China.
School of life science and technology, Wuhan Polytechnic University, Wuhan, China.
J Food Biochem. 2021 Dec;45(12):e13988. doi: 10.1111/jfbc.13988. Epub 2021 Nov 3.
Xylaneses are very common xylanolytic enzymes, which are widely used in food, papermaking, and other industries. In this study, a xylanase-encoding gene xyn1923, which encodes a protein of 1352 amino acids, was identified through the whole genome analysis of Microbacterium imperiale YD-01. Bioinformatics analysis showed that Xyn1923 only had maximum similarity of 37% with the reported xylanase from Alkalihalobacillus halodurans C-125, indicating that Xyn1923 was a novel xylanase. The enzymatic properties of Xyn1923 were systematically analyzed after purification. The results showed that the specific activity of the enzyme was 10.582 ± 0.413 U/mg, while the optimum pH and temperature of the enzyme were 7.0 and 70°C, respectively. The enzyme is stable in the pH range of 6.0-9.0, and the enzyme activity could maintain more than 85% of the original activity after 16 hr incubation at pH 9.0. The enzyme activity is relatively stable in the range of 30-60°C, and its enzyme activity could maintain more than 89% of the original activity after treatment at 60°C for 30 min. Low concentrations (≤1 mM) of Co , Ba , Fe , and Fe metal ions exerted a stimulatory effect on the activity of Xyn1923. And in contrast, high concentrations (≥2 mM) of the above metal ions inhibit the activity of Xyn1923. Mg , Ag , Cu , Ca , Mn , and Pb ions showed a negative effect on the activity of Xyn1923. Enzyme kinetic studies showed that K and V values for xylan were 7.842 ± 0.538 mg/ml and 15.208 ± 0.822 U/mg, respectively. Xyn1923 was found to be a weakly alkaline thermophilic xylanase through an enzymatic property analysis. PRACTICAL APPLICATIONS: Xylanases are widely used in food and feed, biofuels, papermaking, and other industries. However, their use is limited by poor performance under the conditions of pH and temperature. Therefore, the discovery of xylanases with the capability of working efficiently at alkaline pH and high temperature is the priority for its industrial applications. In this study, a novel xylanase-encoding gene xyn1923 from Microbacterium imperiale YD-01 was cloned and heterologously expressed in Escherichia coli. Enzymatic properties of this novel xylanase were investigated, indicating that the robust thermal stability and alkali resistance of Xyn1923 make it a potential candidate for the food and paper industries.
木聚糖酶是一种非常常见的木聚糖酶,广泛应用于食品、造纸等行业。本研究通过对Imperiale YD-01 的全基因组分析,鉴定出一种木聚糖酶编码基因 xyn1923,该基因编码一个由 1352 个氨基酸组成的蛋白质。生物信息学分析表明,Xyn1923 与报道的来自 Alkalihalobacillus halodurans C-125 的木聚糖酶的最大相似性仅为 37%,表明 Xyn1923 是一种新型木聚糖酶。在纯化后,系统分析了 Xyn1923 的酶学性质。结果表明,该酶的比活为 10.582±0.413U/mg,最适 pH 和温度分别为 7.0 和 70°C。该酶在 pH6.0-9.0 范围内稳定,在 pH9.0 下孵育 16 小时后,酶活性仍能保持原始活性的 85%以上。该酶在 30-60°C 范围内相对稳定,在 60°C 处理 30 分钟后,其酶活性仍能保持原始活性的 89%以上。低浓度(≤1mM)的 Co、Ba、Fe 和 Fe 金属离子对 Xyn1923 的活性有促进作用。相比之下,高浓度(≥2mM)的上述金属离子抑制 Xyn1923 的活性。Mg、Ag、Cu、Ca、Mn 和 Pb 离子对 Xyn1923 的活性有负影响。酶动力学研究表明,Xyn1923 对木聚糖的 K 和 V 值分别为 7.842±0.538mg/ml 和 15.208±0.822U/mg。通过酶学性质分析,发现 Xyn1923 是一种弱碱性嗜热木聚糖酶。实际应用:木聚糖酶广泛应用于食品和饲料、生物燃料、造纸等行业。然而,其在 pH 和温度条件下的性能较差限制了其应用。因此,发现能够在碱性 pH 和高温下高效工作的木聚糖酶是其工业应用的优先事项。本研究从 Imperiale YD-01 中克隆并异源表达了一种新型木聚糖酶编码基因 xyn1923。研究了这种新型木聚糖酶的酶学性质,表明 Xyn1923 具有较强的热稳定性和耐碱性,使其成为食品和造纸行业的潜在候选者。