IBG-1: Biotechnology, Forschungszentrum Jülich GmbH, 52425, Jülich, Germany.
Microb Cell Fact. 2019 Aug 21;18(1):143. doi: 10.1186/s12934-019-1193-y.
In most microbial cultivations D-glucose is the main carbon and energy source. However, quantification of D-glucose especially in small scale is still challenging. Therefore, we developed a FRET-based glucose biosensor, which can be applied in microbioreactor-based cultivations. This sensor consists of a glucose binding protein sandwiched between two fluorescent proteins, constituting a FRET pair. Upon D-glucose binding the sensor undergoes a conformational change which is translated into a FRET-ratio change.
The selected sensor shows an apparent K below 1.5 mM D-glucose and a very high sensitivity of up to 70% FRET-ratio change between the unbound and the glucose-saturated state. The soluble sensor was successfully applied online to monitor the glucose concentration in an Escherichia coli culture. Additionally, this sensor was utilized in an at-line process for a Corynebacterium glutamicum culture as an example for a process with cell-specific background (e.g. autofluorescence) and medium-induced quenching. Immobilization of the sensor via HaloTag enabled purification and covalent immobilization in one step and increased the stability during application, significantly.
A FRET-based glucose sensor was used to quantify D-glucose consumption in microtiter plate based cultivations. To the best of our knowledge, this is the first method reported for online quantification of D-glucose in microtiter plate based cultivations. In comparison to D-glucose analysis via an enzymatic assay and HPLC, the sensor performed equally well, but enabled much faster measurements, which allowed to speed up microbial strain development significantly.
在大多数微生物培养中,D-葡萄糖是主要的碳源和能量源。然而,D-葡萄糖的定量,尤其是在小规模培养中,仍然具有挑战性。因此,我们开发了一种基于荧光共振能量转移(FRET)的葡萄糖生物传感器,可应用于基于微生物反应器的培养中。该传感器由夹在两个荧光蛋白之间的葡萄糖结合蛋白组成,构成一个 FRET 对。在 D-葡萄糖结合后,传感器发生构象变化,转化为 FRET 比值变化。
所选传感器对 D-葡萄糖的表观 K 低于 1.5 mM,且在未结合和葡萄糖饱和状态之间具有高达 70%的 FRET 比值变化的超高灵敏度。可溶性传感器成功地在线应用于监测大肠杆菌培养物中的葡萄糖浓度。此外,该传感器还被用于在线过程中监测谷氨酸棒状杆菌培养物的葡萄糖浓度,作为具有细胞特异性背景(例如自发荧光)和介质诱导淬灭的过程的一个示例。通过 HaloTag 对传感器进行固定化,可实现一步纯化和共价固定化,并显著提高其在应用过程中的稳定性。
使用基于 FRET 的葡萄糖传感器来定量微滴定板培养物中的 D-葡萄糖消耗。据我们所知,这是首次报道用于在线定量微滴定板培养物中 D-葡萄糖的方法。与通过酶测定法和 HPLC 分析 D-葡萄糖相比,该传感器的性能相当,但测量速度更快,这显著加快了微生物菌株的开发速度。