Department of Biology, University of Naples "Federico II", Complesso Universitario Di Monte S. Angelo, Via Cupa Nuova Cinthia 21, 80126, Naples, Italy.
Institute of Biosciences and BioResources, National Research Council of Italy, Via P. Castellino 111, 80131, Naples, Italy.
Extremophiles. 2019 Jul;23(4):407-419. doi: 10.1007/s00792-019-01093-9. Epub 2019 May 3.
In the framework of the discovery of new thermophilic enzymes of potential biotechnological interest, we embarked in the characterization of a new thermophilic esterase from the thermophilic bacterium Geobacillus thermodenitrificans. The phylogenetic analysis of the GTNG_0744 esterase indicated that the sequence belongs to the enterochelin/enterobactin esterase group, which have never been recognized as a family in the lipases/esterase classification. These enzymes catalyze the last step in the acquisition of environmental Fe through siderophore hydrolysis. In silico analysis revealed, for the first time, that the machinery for the uptake of siderophores is present in G. thermodenitrificans. The purified recombinant enzyme, EstGtA3, showed different substrate specificity from known enterochelin/enterobactin esterases, recognizing short chain esters with a higher specificity constant for 4-NP caprylate. The enzyme does not require cofactors for its activity, is active in the pH range 7.0-8.5, has highest activity at 60 °C and is 100% stable when incubated for 16 h at 55 °C. DTT, β-mercaptoethanol and Triton X-100 have an activating effect on the enzymatic activity. Organic solvents have in general a negative effect on the enzyme, but n-hexane is a strong activator up to 150, making EstGtA3 a good candidate for applications in biotechnology.
在发现具有潜在生物技术应用价值的新型嗜热酶的框架内,我们对来自嗜热细菌 Geobacillus thermodenitrificans 的新型嗜热酯酶进行了表征。GTNG_0744 酯酶的系统发育分析表明,该序列属于肠菌素/肠铁素酯酶组,该组在脂肪酶/酯酶分类中从未被认为是一个家族。这些酶催化通过 siderophore 水解获取环境 Fe 的最后一步。计算机分析首次表明,嗜铁素摄取机制存在于 G. thermodenitrificans 中。纯化的重组酶 EstGtA3 表现出与已知肠菌素/肠铁素酯酶不同的底物特异性,对 4-NP 辛酯具有更高的特异性常数。该酶不需要辅助因子即可发挥活性,在 pH 值 7.0-8.5 范围内具有活性,在 60°C 时活性最高,在 55°C 下孵育 16 小时时保持 100%稳定。DTT、β-巯基乙醇和 Triton X-100 对酶活性具有激活作用。有机溶剂通常对酶有负面影响,但正己烷是一种强烈的激活剂,最高可达 150,这使得 EstGtA3 成为生物技术应用的良好候选者。