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用于……多色流式细胞术分析的荧光蛋白候选物的评估

Assessment of fluorescent protein candidates for multi-color flow cytometry analysis of .

作者信息

Perruca-Foncillas Raquel, Davidsson Johan, Carlquist Magnus, Gorwa-Grauslund Marie F

机构信息

Applied Microbiology, Department of Chemistry, Lund University, P.O. Box 124, SE-221 00 Lund, Sweden.

出版信息

Biotechnol Rep (Amst). 2022 Apr 26;34:e00735. doi: 10.1016/j.btre.2022.e00735. eCollection 2022 Jun.

Abstract

Transcription factor-based biosensors represent promising tools in the construction and evaluation of efficient cell factories for the sustainable production of fuels, chemicals and pharmaceuticals. They can notably be designed to follow the production of a target compound or to monitor key cellular properties, such as stress or starvation. In most cases, the biosensors are built with fluorescent protein (FP) genes as reporter genes because of the direct correlation between promoter activity and fluorescence level that can be measured using, for instance, flow cytometry or fluorometry. The expansion of available FPs offers the possibility of using several FPs - and biosensors - in parallel in one host, with simultaneous detection using multicolor flow cytometry. However, the technique is currently limited by the unavailability of combinations of FP whose genes can be successfully expressed in the host and whose fluorescence can be efficiently distinguished from each other. In the present study, the broad collection of available FPs was explored and four different FPs were successfully expressed in the yeast : yEGFP, mEGFP, CyOFP1opt and mBeRFPopt. After studying their fluorescence signals, population heterogeneity and possible interactions, we recommend two original combinations of FPs for bi-color flow cytometry: mEGFP together with either CyOFP1opt or mBeRFPopt, as well as the combination of all three FPs mEGFP, CyOFP1opt and mBeRFPopt for tri-color flow cytometry. These combinations will allow to perform different types of bi-color or possibly tri-color flow cytometry and FACS experiments with yeast, such as phenotype evaluation, screening or sorting, by single-laser excitation with a standard 488 nm blue laser.

摘要

基于转录因子的生物传感器是构建和评估用于可持续生产燃料、化学品和药品的高效细胞工厂的有前景的工具。它们尤其可以被设计用于跟踪目标化合物的生产或监测关键细胞特性,如应激或饥饿。在大多数情况下,生物传感器以荧光蛋白(FP)基因作为报告基因构建,这是因为启动子活性与荧光水平之间存在直接关联,而荧光水平可以使用例如流式细胞术或荧光测定法进行测量。可用荧光蛋白种类的增加使得在一个宿主中同时平行使用多种荧光蛋白和生物传感器成为可能,并可通过多色流式细胞术进行同步检测。然而,目前该技术受到限制,因为缺乏能够在宿主中成功表达且其荧光能够有效区分的荧光蛋白组合。在本研究中,我们探索了大量可用的荧光蛋白,并在酵母中成功表达了四种不同的荧光蛋白:yEGFP、mEGFP、CyOFP1opt和mBeRFPopt。在研究了它们的荧光信号、群体异质性和可能的相互作用之后,我们推荐两种用于双色流式细胞术的荧光蛋白原始组合:mEGFP与CyOFP1opt或mBeRFPopt组合,以及mEGFP、CyOFP1opt和mBeRFPopt这三种荧光蛋白用于三色流式细胞术的组合。这些组合将允许使用标准的488 nm蓝色激光通过单激光激发对酵母进行不同类型的双色或可能的三色流式细胞术和荧光激活细胞分选实验,如表型评估、筛选或分选。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fdaf/9171426/f8ae16f1e380/gr1.jpg

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