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一种耐酸和耐冷的β-半乳糖苷酶,可能适合用于处理牛奶和乳清样品。

An acid-tolerant and cold-active β-galactosidase potentially suitable to process milk and whey samples.

机构信息

Center of Innovative and Applied Bioprocessing (DBT-CIAB), SAS Nagar, Sector 81, Mohali, India.

Institute of Bioresources and Sustainable Development (DBT-IBSD), Regional Centre, Tadong, India.

出版信息

Appl Microbiol Biotechnol. 2022 May;106(9-10):3599-3610. doi: 10.1007/s00253-022-11970-7. Epub 2022 May 20.

Abstract

A novel β-galactosidase gene (gal) was cloned from an aquatic habitat metagenome. The analysis of its translated sequence (Gal) revealed its phylogenetic closeness towards Verrucomicrobia sp. The sequence comparison and homology structure analysis designated it a member of GH42 family. The three-dimensional homology model of Gal depicted a typical (β/α)8 TIM-barrel containing the catalytic core. The gene (gal) was expressed in a heterologous host, Escherichia coli, and the purified protein (Gal) was subjected to biochemical characterization. It displayed β-galactosidase activity in a wide range of pH (2.0 to 9.0) and temperature (4 to 60 °C). The heat exposed protein showed considerable stability at 40 and 50 °C, with the half-life of about 100 h and 35 h, respectively. The presence of Na, Mg, K, Ca, and Mn metals was favorable to the catalytic efficiency of Gal, which is a desirable catalytic feature, as these metals exist in milk. It showed remarkable tolerance of glucose and galactose in the reaction. Furthermore, Gal discerned transglycosylation activity that is useful in galacto-oligosaccharides' production. These biochemical properties specify the suitability of this biocatalyst for milk and whey processing applications. KEY POINTS: • A novel β-galactosidase gene was identified and characterized from an aquatic habitat. • It was active in extreme acidic to mild alkaline pH and at cold to moderate temperatures. • The β-galactosidase was capable to hydrolyze lactose in milk and whey.

摘要

从水生生境宏基因组中克隆了一种新型β-半乳糖苷酶基因(gal)。对其翻译序列(Gal)的分析表明,它与疣微菌门(Verrucomicrobia)密切相关。序列比较和同源结构分析将其指定为 GH42 家族的成员。Gal 的三维同源模型描绘了一个典型的(β/α)8 TIM-桶,包含催化核心。该基因(gal)在异源宿主大肠杆菌中表达,纯化的蛋白(Gal)进行了生化特性分析。它在广泛的 pH(2.0 至 9.0)和温度(4 至 60°C)范围内显示出β-半乳糖苷酶活性。暴露于热的蛋白质在 40 和 50°C 下表现出相当的稳定性,半衰期分别约为 100 小时和 35 小时。存在 Na、Mg、K、Ca 和 Mn 金属有利于 Gal 的催化效率,这是一个理想的催化特性,因为这些金属存在于牛奶中。它在反应中对葡萄糖和半乳糖表现出显著的耐受性。此外,Gal 具有转糖苷活性,可用于生产半乳糖低聚糖。这些生化特性表明该生物催化剂适用于牛奶和乳清加工应用。关键点:• 从水生栖息地中鉴定和表征了一种新型β-半乳糖苷酶基因。• 在极端酸性到温和碱性 pH 以及在低温到中等温度下均具有活性。• 该β-半乳糖苷酶能够水解牛奶和乳清中的乳糖。

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