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通过马铃薯Y病毒基因载体在植物中产生的组氨酸标签蛋白的分离与稳定性

Isolation and stability of histidine-tagged proteins produced in plants via potyvirus gene vectors.

作者信息

Dolja V V, Peremyslov V V, Keller K E, Martin R R, Hong J

机构信息

Department of Botany and Plant Pathology, Oregon State University, Corvallis 97331, USA.

出版信息

Virology. 1998 Dec 5;252(1):269-74. doi: 10.1006/viro.1998.9458.

Abstract

A system for the expression and purification of histidine-tagged proteins from plants has been developed using a tobacco etch potyvirus (TEV)-derived gene vectors. The vectors offered a convenient polylinker and a choice of histidine tagging at the recombinant proteins' N or C termini. These vectors were utilized for expression of proteins encoded by beet yellows closterovirus (BYV). Approximately 4 micrograms/g of 20-kDa BYV protein was readily isolated from plants systemically infected by hybrid TEV. In contrast, only minute quantities of 22-kDa BYV capsid protein (CP) histidine-tagged at its N or C terminus could be purified. Rapid degradation of the recombinant CP has been implicated in its failure to accumulate in infected plants. Fusion with TEV HC-Pro stabilized the histidine-tagged BYV CP and facilitated purification of the fusion product from infected plants. This same fusion approach was successfully used with the 24-kDa minor BYV CP. The recombinant proteins were recognized by histidine-tag-specific monoclonal antibody in immunoblot analysis. These results demonstrate the utility of a designed series of TEV vectors for expression, detection, and purification of the recombinant proteins and suggest that intrinsic protein stability is a major factor in a recovery of recombinant proteins from plants.

摘要

利用烟草蚀纹马铃薯Y病毒(TEV)衍生的基因载体,开发了一种从植物中表达和纯化组氨酸标签蛋白的系统。这些载体提供了一个方便的多克隆位点,并且可以在重组蛋白的N端或C端选择组氨酸标签。这些载体被用于表达甜菜黄化病毒(BYV)编码的蛋白。从被杂交TEV系统感染的植物中很容易分离出约4微克/克的20 kDa BYV蛋白。相比之下,仅能纯化出极少量在其N端或C端带有组氨酸标签的22 kDa BYV衣壳蛋白(CP)。重组CP的快速降解被认为是其在受感染植物中未能积累的原因。与TEV HC-Pro融合可稳定组氨酸标签的BYV CP,并有助于从受感染植物中纯化融合产物。同样的融合方法成功应用于24 kDa的BYV次要CP。在免疫印迹分析中,重组蛋白可被组氨酸标签特异性单克隆抗体识别。这些结果证明了一系列设计的TEV载体在重组蛋白表达、检测和纯化中的实用性,并表明内在蛋白质稳定性是从植物中回收重组蛋白的一个主要因素。

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