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枯草芽孢杆菌核黄素合酶衣壳对蛋白质客体的包封与控释

Encapsulation and Controlled Release of Protein Guests by the Bacillus subtilis Lumazine Synthase Capsid.

作者信息

Han Xue, Woycechowsky Kenneth J

机构信息

School of Pharmaceutical Science and Technology, Tianjin University , Tianjin 300072, China.

出版信息

Biochemistry. 2017 Nov 28;56(47):6211-6220. doi: 10.1021/acs.biochem.7b00669. Epub 2017 Nov 9.

Abstract

In Bacillus subtilis, the 60-subunit dodecahedral capsid formed by lumazine synthase (BsLS) acts as a container for trimeric riboflavin synthase (BsRS). To test whether the C-terminal sequence of BsRS is responsible for its encapsulation by BsLS, the green fluorescent protein (GFP) was fused to either the last 11 or the last 32 amino acids of BsRS, yielding variant GFP11 or GFP32, respectively. After purification, BsLS capsids that had been co-produced in bacteria with GFP11 and GFP32 are 15- and 6-fold more fluorescent, respectively, than BsLS co-produced with GFP lacking any BsRS fragment, indicating complex formation. Enzyme-linked immunosorbent assay experiments confirm that GFP11 is localized within the BsLS capsid. In addition, fusing the last 11 amino acids of BsRS to the C-terminus of the Abrin A chain also led to its encapsulation by BsLS at a level similar to that of GFP11. Together, these results demonstrate that the C-terminal tail of BsRS can act as an encapsulation tag capable of targeting other proteins to the BsLS capsid interior. As with the natural BsLS-BsRS complex, mild changes in pH and buffer identity trigger dissociation of the GFP11 guest, accompanied by a substantial expansion of the BsLS capsid. This system for protein encapsulation and release provides a novel tool for bionanotechnology.

摘要

在枯草芽孢杆菌中,由核黄素合酶(BsLS)形成的60亚基十二面体衣壳作为三聚体核黄素合酶(BsRS)的容器。为了测试BsRS的C末端序列是否负责其被BsLS封装,将绿色荧光蛋白(GFP)分别与BsRS的最后11个或最后32个氨基酸融合,分别产生变体GFP11或GFP32。纯化后,在细菌中与GFP11和GFP32共同产生的BsLS衣壳的荧光分别比与缺乏任何BsRS片段的GFP共同产生的BsLS高15倍和6倍,表明形成了复合物。酶联免疫吸附测定实验证实GFP11定位于BsLS衣壳内。此外,将BsRS的最后11个氨基酸融合到相思子毒素A链的C末端也导致其被BsLS封装,其水平与GFP11相似。总之,这些结果表明BsRS的C末端尾巴可以作为一种封装标签,能够将其他蛋白质靶向到BsLS衣壳内部。与天然的BsLS-BsRS复合物一样,pH值和缓冲液性质的轻微变化会触发GFP11客体的解离,同时伴随着BsLS衣壳的大量膨胀。这种蛋白质封装和释放系统为生物纳米技术提供了一种新型工具。

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