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基于在细菌中高产的带六组氨酸标签的B片段构建活性白喉毒素。

Reconstitution of active diphtheria toxin based on a hexahistidine tagged version of the B-fragment produced to high yields in bacteria.

作者信息

Spilsberg Bjørn, Sandvig Kirsten, Wälchli Sébastien

机构信息

Department of Biochemistry, Institute for Cancer Research, Faculty Division The Norwegian Radium Hospital, University of Oslo, Montebello, N-0310 Oslo, Norway.

出版信息

Toxicon. 2005 Dec 15;46(8):900-6. doi: 10.1016/j.toxicon.2005.08.015. Epub 2005 Nov 2.

Abstract

Diphtheria toxin consists of an A-fragment that inactivates elongation factor 2 and a B-fragment that both binds to the toxin receptor and mediates translocation of the A-fragment across cellular membranes to the cytosol. Several fragments of the toxin and an inactive version of the holotoxin have been expressed in Escherichia coli, but the B-fragment alone has proven difficult to express. Only low levels of expression have been achieved. We have designed a hexahistidine tagged version of a modified diphtheria toxin B-fragment (DT-BHis) that can be expressed to high levels in E. coli. DT-BHis contains the entire diphtheria toxin B-fragment preceded by an alanine and succeeded by a leucine, a glutamic acid and a hexahistidine tag and could be purified in a single step using nickel-coated agarose beads to 85% homogeneity. DT-BHis bound specifically to the diphtheria toxin receptor and was able to compete out the effect of the wild type diphtheria toxin. Furthermore, DT-BHis was able to form pores in cellular membranes in a manner similar to the wild type B-fragment. The high yield makes DT-BHis a suitable tool in studies of diphtheria toxin interaction with cells or liposomes since functional diphtheria toxin was easily formed upon addition of A-fragment. The reconstituted diphtheria toxin showed toxicity in the same range as the wild type.

摘要

白喉毒素由一个使延伸因子2失活的A片段和一个既与毒素受体结合又介导A片段穿过细胞膜进入细胞质的B片段组成。毒素的几个片段和全毒素的无活性版本已在大肠杆菌中表达,但单独的B片段已证明难以表达,仅实现了低水平的表达。我们设计了一种带有六组氨酸标签的修饰白喉毒素B片段(DT-BHis),它能在大肠杆菌中高水平表达。DT-BHis包含整个白喉毒素B片段,前面有一个丙氨酸,后面有一个亮氨酸、一个谷氨酸和一个六组氨酸标签,并且可以使用镍包被的琼脂糖珠一步纯化至85%的纯度。DT-BHis特异性结合白喉毒素受体,并能够竞争消除野生型白喉毒素的作用。此外,DT-BHis能够以与野生型B片段类似的方式在细胞膜上形成孔道。高产量使得DT-BHis成为研究白喉毒素与细胞或脂质体相互作用的合适工具,因为加入A片段后很容易形成有功能的白喉毒素。重组后的白喉毒素显示出与野生型相同范围的毒性。

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