Jensen Torbjørn Ølshøj, Pogrebnyakov Ivan, Falkenberg Kristoffer Bach, Redl Stephanie, Nielsen Alex Toftgaard
The Novo Nordisk Foundation Center for Biosustainability, Technical University of Denmark, Kemitorvet Building 220, 2800, Kongens Lyngby, Denmark.
AMB Express. 2017 Sep 6;7(1):169. doi: 10.1186/s13568-017-0469-z.
Use of thermophilic organisms has a range of advantages, but the significant lack of engineering tools limits their applications. Here we show that β-galactosidase from Geobacillus stearothermophilus (BgaB) can be applicable in a range of conditions, including different temperatures and oxygen concentrations. This protein functions both as a marker, promoting colony color development in the presence of a lactose analogue S-gal, and as a reporter enabling quantitative measurement by a simple colorimetric assay. Optimal performance was observed at 70 °C and pH 6.4. The gene was introduced into G. thermoglucosidans. The combination of BgaB expressed from promoters of varying strength with S-gal produced distinct black colonies in aerobic and anaerobic conditions at temperatures ranging from 37 to 60 °C. It showed an important advantage over the conventional β-galactosidase (LacZ) and substrate X-gal, which were inactive at high temperature and under anaerobic conditions. To demonstrate the versatility of the reporter, a promoter library was constructed by randomizing sequences around -35 and -10 regions in a wild type groES promoter from Geobacillus sp. GHH01. The library contained 28 promoter variants and encompassed fivefold variation. The experimental pipeline allowed construction and measurement of expression levels of the library in just 4 days. This β-galactosidase provides a promising tool for engineering of aerobic, anaerobic, and thermophilic production organisms such as Geobacillus species.
嗜热生物的使用具有一系列优势,但工程工具的严重匮乏限制了它们的应用。在此我们表明,嗜热栖热放线菌的β-半乳糖苷酶(BgaB)可在一系列条件下应用,包括不同温度和氧气浓度。这种蛋白质既作为一种标记物,在存在乳糖类似物S-半乳糖时促进菌落显色,又作为一种报告基因,能够通过简单的比色测定进行定量测量。在70°C和pH 6.4时观察到最佳性能。该基因被导入嗜热葡糖苷酶芽孢杆菌。由不同强度启动子表达的BgaB与S-半乳糖的组合,在37至60°C的温度下,在需氧和厌氧条件下产生了明显的黑色菌落。它相对于传统的β-半乳糖苷酶(LacZ)和底物X-半乳糖显示出重要优势,后者在高温和厌氧条件下无活性。为了证明该报告基因的多功能性,通过使嗜热栖热放线菌GHH01野生型groES启动子中-35和-10区域周围的序列随机化构建了一个启动子文库。该文库包含28个启动子变体,涵盖了五倍的变化。该实验流程仅需4天就能构建并测量文库的表达水平。这种β-半乳糖苷酶为工程改造需氧、厌氧和嗜热生产生物(如嗜热栖热放线菌种)提供了一种有前景的工具。