火球菌属
醇脱氢酶
融合蛋白
超分子化学
材料科学
乙烯醇
蛋白质工程
融合
酶
自组装
蛋白质稳定性
组合化学
纳米技术
生物化学
化学
有机化学
基因
重组DNA
聚合物
语言学
哲学
晶体结构
复合材料
古细菌
作者
Beyza Bulutoglu,Florika C. Macazo,Jacob B. Bale,Neil P. King,David Baker,Shelley D. Minteer,Scott Banta
标识
DOI:10.1021/acsami.9b04256
摘要
Proteins designed for supramolecular assembly provide a simple means to immobilize and organize enzymes for biotechnology applications. We have genetically fused the thermostable alcohol dehydrogenase D (AdhD) from Pyrococcus furiosus to a computationally designed cage-forming protein (O3-33). The trimeric form of the O3-33–AdhD fusion protein was most active in solution. The immobilization of the fusion protein on bioelectrodes leads to a doubling of the electrochemical operational stability as compared to the unfused control proteins. Thus, the fusion of enzymes to the designed self-assembling domains offers a simple strategy to increase the stability in biocatalytic systems.
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