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RECONSTITUTING MEMBRANE PROTEINS INTO ARTIFICIAL MEMBRANES AND DETECTION OF THEIR ACTIVITIES

机译:将膜蛋白重构为人工膜并检测其活性

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We have successfully purified BR from purple membrane of Halobacterium Salinarium and Cox from the genetically engineered plasmid inserted in Rhodobacter Sphaeroides. The activities of the purified enzymes have shown in lipid vesicles as well as in polymer vesicles and planar membranes. Phosphatidylcholine derived lipid vesicles created the most nature like environment for the enzymes. Triblock copolymer membrane was the alternative choice for membrane protein reconstitution since polymers are more durable, ideal for industrial applications and support enzyme activities better. We also demonstrated the backward function of Cox in vitro by changing proton concentration in the surrounding medium. Langmuir-Blodgett method was used to reconstitute the enzymes into the planar lipid or polymer membranes. The enzyme activities of the enzymes in planar membrane system were tested by impedance spectroscopy.
机译:我们已经成功地从盐杆菌盐膜的紫色膜中纯化了BR,并从插入球形红细菌的基因工程质粒中成功纯化了Cox。纯化的酶的活性已显示在脂质囊泡以及聚合物囊泡和平面膜中。磷脂酰胆碱衍生的脂质囊泡为酶创造了最自然的环境。三嵌段共聚物膜是膜蛋白重构的替代选择,因为聚合物更耐用,非常适合工业应用并更好地支持酶的活性。我们还通过改变周围介质中的质子浓度证明了Cox在体外的反向功能。用Langmuir-Blodgett方法将酶重构为平面脂质或聚合物膜。通过阻抗谱测试了平面膜系统中酶的酶活性。

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