首页> 外文会议>Micro-NanoMechatronics and Human Science, 2009. MHS 2009 >GFP synthesis in giant liposomes using the in vitro translation system of Thermococcus kodakaraensis
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GFP synthesis in giant liposomes using the in vitro translation system of Thermococcus kodakaraensis

机译:使用柯达热球菌体外翻译系统在巨型脂质体中合成GFP

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The possibilities of an in vitro translation system, based on cell components of the hyperthermophilic archaeon, Thermococcus kodakaraensis, to utilize at a lower temperature range were examined. Green fluorescence protein (GFP) was used as the reporter protein. Through optimization of several experimental conditions, the yield of active GFP production at 40°C increased 5-fold. The optimized system was encapsulated in liposome made by passing through the oil/water interfaces. The prepared liposomes were incubated at 40°C for 90 min, and fluorescence was examined by laser confocal microscopy. A significant increase in average fluorescence intensity was observed in liposomes with GFP mRNA, indicating that the T. kodakaraensis in vitro translation system is applicable for protein production within giant liposomes. These artificial cell models should provide the means to reconstitute various cell functions from a synthetic biology approach.
机译:基于超嗜热古生菌热球菌kodakaraensis的细胞成分,研究了体外翻译系统在较低温度范围内使用的可能性。使用绿色荧光蛋白(GFP)作为报告蛋白。通过优化几个实验条件,在40°C下的主动GFP生产的产量增加了5倍。将优化的系统封装在通过油/水界面制成的脂质体中。制备的脂质体在40°C孵育90分钟,并通过激光共聚焦显微镜检查荧光。在具有GFP mRNA的脂质体中观察到平均荧光强度显着增加,这表明柯达氏衣原体体外翻译系统适用于巨型脂质体中的蛋白质生产。这些人工细胞模型应提供从合成生物学方法重构各种细胞功能的方法。

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