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A nanobody:GFP bacterial platform that enables functional enzyme display and easy quantification of display capacity

机译:纳米抗体:GFP细菌平台,可实现功能性酶展示并易于量化展示能力

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Background Bacterial surface display is an attractive technique for the production of cell-anchored, functional proteins and engineering of whole-cell catalysts. Although various outer membrane proteins have been used for surface display, an easy and versatile high-throughput-compatible assay for evaluating and developing surface display systems is missing. Results Using a single domain antibody (also called nanobody) with high affinity for green fluorescent protein (GFP), we constructed a system that allows for fast, fluorescence-based detection of displayed proteins. The outer membrane hybrid protein LppOmpA and the autotransporter C-IgAP exposed the nanobody on the surface of Escherichia coli with very different efficiency. Both anchors were capable of functionally displaying the enzyme Chitinase A as a fusion with the nanobody, and this considerably increased expression levels compared to displaying the nanobody alone. We used flow cytometry to analyse display capability on single-cell versus population level and found that the signal peptide of the anchor has great effect on display efficiency. Conclusions We have developed an inexpensive and easy read-out assay for surface display using nanobody:GFP interactions. The assay is compatible with the most common fluorescence detection methods, including multi-well plate whole-cell fluorescence detection, SDS-PAGE in-gel fluorescence, microscopy and flow cytometry. We anticipate that the platform will facilitate future in-depth studies on the mechanism of protein transport to the surface of living cells, as well as the optimisation of applications in industrial biotech.
机译:背景技术细菌表面展示是一种用于生产细胞锚定功能蛋白和设计全细胞催化剂的有吸引力的技术。尽管各种外膜蛋白已用于表面展示,但是缺少用于评估和开发表面展示系统的简便且通用的高通量兼容测定法。结果使用对绿色荧光蛋白(GFP)具有高亲和力的单结构域抗体(也称为纳米抗体),我们构建了一个系统,该系统可对显示的蛋白质进行基于荧光的快速检测。外膜杂合蛋白LppOmpA和自转运蛋白C-IgAP以不同的效率暴露大肠杆菌表面的纳米抗体。两个锚都能够在功能上展示几丁质酶A与纳米抗体的融合体,与单独展示纳米抗体相比,这大大提高了表达水平。我们使用流式细胞仪分析了单细胞对群体水平的显示能力,发现锚的信号肽对显示效率有很大影响。结论我们已经开发了一种便宜且易于读取的表面显示检测方法,该方法使用了纳米抗体:GFP相互作用。该测定与最常见的荧光检测方法兼容,包括多孔板全细胞荧光检测,SDS-PAGE凝胶内荧光,显微镜和流式细胞仪。我们预计该平台将促进未来对蛋白质向活细胞表面转运的机制进行深入研究,以及优化工业生物技术中的应用。

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