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High-throughput screen for sorting cells capable of producing the biofuel feedstock botryococcenef

机译:高通量筛选器,用于分选能够产生生物燃料原料葡萄球菌的细胞

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Botryococcene is a branched triterpene produced by the algae Botryococcus braunii. Hydrocracking botryococcene yields a variety of combustible fuels such as gasoline and jet fuel. Engineering host systems and proteins involved in the biosynthesis of botryococcene to optimize production is of interest given these applications. The current study investigates the use of a diaryltetrazole based screen that undergoes a photoclick reaction with terminal alkenes, such as the branched terminal alkene present on botryococcene, to yield a fluorescent product. Host E. coli systems were established to produce botryococcene, squalene, and no triterpene to serve as a control. Cells were incubated with tetrazole and briefly irradiated with UV light to initiate the photoclick reaction. It was found that the botryococcene producing cells yielded observable fluorescence while the squalene and control cells had negligible fluorescence turn-on activity. Fluorescence-activated cell sorting (FACS) was subsequently used to identify and sort botryococcene producing E. coli from a mixture of control and squalene producing cells.
机译:Botryococcene是藻类Botryococcus braunii生产的支链三萜。加氢裂化葡萄球菌素可产生多种可燃燃料,例如汽油和喷气燃料。考虑到这些应用,工程化涉及葡萄孢菌生物合成的宿主系统和蛋白质以优化产量是令人感兴趣的。当前的研究研究了使用基于二芳基四唑的筛子,该筛子与末端烯烃(例如存在于茂金属茂中的支链末端烯烃)发生光点击反应,以产生荧光产物。建立了宿主大肠杆菌系统以产生葡萄球菌,角鲨烯,而没有三萜烯用作对照。将细胞与四唑孵育,并用紫外线短暂照射以引发光点击反应。已发现产生芽孢杆菌的细胞产生可观察到的荧光,而角鲨烯和对照细胞的荧光开启活性可忽略不计。随后,使用荧光激活细胞分选术(FACS)从对照和角鲨烯生产细胞的混合物中鉴定和分选产生Botryococcene的大肠杆菌。

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