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新型地芽孢杆菌 DSM13552 甲醇稳定酯酶的功能表达,用于无溶剂体系中肉桂酸乙酸酯的生物催化合成。

Functional expression of a novel methanol-stable esterase from Geobacillus subterraneus DSM13552 for biocatalytic synthesis of cinnamyl acetate in a solvent-free system.

机构信息

State Key Laboratory of Bioreactor Engineering, Newworld Institute of Biotechnology, East China University of Science and Technology, 130 Meilong Road, Shanghai, 200237, People's Republic of China.

Shanghai University of Medicine and Health Sciences, Shanghai, 200093, People's Republic of China.

出版信息

BMC Biotechnol. 2020 Jun 29;20(1):36. doi: 10.1186/s12896-020-00622-1.

Abstract

BACKGROUND

Esterases are widely distributed in nature and have important applications in medical, industrial and physiological. Recently, the increased demand for flavor esters has prompted the search of catalysts like lipases and esterases. Esterases from thermophiles also show thermal stability at elevated temperatures and have become enzymes of special interest in biotechnological applications. Although most of esterases catalyzed reactions are carried out in toxic and inflammable organic solvents, the solvent-free system owning many advantages such as low cost and easy downstream processing.

RESULTS

The gene estGSU753 from Geobacillus subterraneus DSM13552 was cloned, sequenced and overexpressed into Escherichia coli BL21 (DE3). The novel gene has an open reading frame of 753 bp and encodes 250-amino-acid esterase (EstGSU753). The sequence analysis showed that the protein contains a catalytic triad formed by Ser97, Asp196 and His226, and the Ser of the active site is located in the conserved motif Gly95-X-Ser97-X-Gly99 included in most esterases and lipases. The protein catalyzed the hydrolysis of pNP-esters of different acyl chain lengths, and the enzyme specific activity was 70 U/mg with the optimum substrate pNP-caprylate. The optimum pH and temperature of the recombinant enzyme were 8.0 and 60 °C respectively. The resulting EstGSU753 showed remarkable stability against methanol. After the incubation at 50% methanol for 9 days, EstGSU753 retained 50% of its original activity. Even incubation at 90% methanol for 35 h, EstGSU753 retained 50% of its original activity. Also, the preliminary study of the transesterification shows the potential value in synthesis of short-chain flavor esters in a solvent-free system, and more than 99% conversion was obtained in 6 h (substrate: cinnamyl alcohol, 1.0 M).

CONCLUSIONS

This is the first report of esterase gene cloning from Geobacillus subterraneus with detailed enzymatic properties. This methanol-stable esterase showed potential value in industrial applications especially in the perfume industry.

摘要

背景

酯酶广泛存在于自然界中,在医学、工业和生理学等领域具有重要的应用。最近,对风味酯的需求增加,促使人们寻找脂肪酶和酯酶等催化剂。嗜热菌来源的酯酶在较高温度下也表现出热稳定性,已成为生物技术应用中特别感兴趣的酶。尽管大多数酯酶催化的反应都是在有毒和易燃的有机溶剂中进行的,但无溶剂体系具有成本低、下游处理容易等优点。

结果

从地杆菌 DSM13552 中克隆、测序并在大肠杆菌 BL21(DE3)中过表达了基因 estGSU753。新基因的开放阅读框为 753bp,编码 250 个氨基酸的酯酶(EstGSU753)。序列分析表明,该蛋白含有由 Ser97、Asp196 和 His226 组成的催化三联体,活性位点的 Ser 位于大多数酯酶和脂肪酶中包含的保守基序 Gly95-X-Ser97-X-Gly99 中。该蛋白催化不同酰基链长的 pNP-酯的水解,其最适底物 pNP-辛酸酯的酶比活为 70U/mg。重组酶的最适 pH 和温度分别为 8.0 和 60°C。所得的 EstGSU753 对甲醇表现出显著的稳定性。在 50%甲醇中孵育 9 天后,EstGSU753 保留了其原始活性的 50%。即使在 90%甲醇中孵育 35 小时,EstGSU753 仍保留了其原始活性的 50%。此外,初步的转酯化研究表明,该酶在无溶剂体系中合成短链风味酯具有潜在价值,在 6 小时内(底物:肉桂醇,1.0M)转化率超过 99%。

结论

这是首次从地杆菌中克隆酯酶基因并详细研究其酶学性质的报道。这种甲醇稳定的酯酶在工业应用中具有潜在价值,特别是在香料工业中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd4f/7322897/f3b001354f39/12896_2020_622_Fig1_HTML.jpg

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