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一种用于从重组蛋白中高效酶促去除标签的高度特异性系统。

A highly specific system for efficient enzymatic removal of tags from recombinant proteins.

作者信息

Schäfer Frank, Schäfer Annette, Steinert Kerstin

机构信息

QIAGEN GmbH, Hilden, Germany.

出版信息

J Biomol Tech. 2002 Sep;13(3):158-71.

Abstract

The TAGZyme system allows efficient and precise exoproteolytic cleavage of N-terminal affinity tags, such as the 6xHis tag, from recombinant proteins. In combination with Ni-NTA technology, the TAGZyme system provides high-purity proteins free of vector-encoded amino acids for use in applications that demand recombinant reagents, an absence of nonspecific cleavage, and a complete removal of all impurities from the target protein preparation. We present results of recent studies on the use of the TAGZyme system. The N-terminal affinity tag sequences encoded by the TAGZyme pQE expression vectors are optimized with respect to their cleavage using TAGZyme exoproteases. The vectors have multiple cloning site sequences designed to allow complete exoproteolytic removal of the encoded N-terminal affinity tag regardless of the restriction site used for cloning. The efficient cleavage reaction and removal of the TAGZyme enzymes by subtractive Ni-NTA chromatography is demonstrated for 6xHis-interleukin-1beta and 6xHis-TNF. In both cases, more than 99.8% of TAGZyme proteolytic activity was separated from recovered, detagged proteins. N-terminal analyses by Edman degradation revealed the predicted sequences of the native proteins and indicated a purity in excess of 99%. For cleavage of both 6xHis-tagged GFP and IL-1beta, DAPase enzyme gave an average cleavage rate of 1.5 +/- 0.5 min per amino acid.

摘要

TAGZyme系统能够高效、精确地从重组蛋白上对N端亲和标签(如6xHis标签)进行外切蛋白水解切割。与镍-亚氨基二乙酸(Ni-NTA)技术相结合,TAGZyme系统可提供不含载体编码氨基酸的高纯度蛋白,用于需要重组试剂、不存在非特异性切割且能从目标蛋白制备物中完全去除所有杂质的应用。我们展示了近期关于使用TAGZyme系统的研究结果。TAGZyme pQE表达载体编码的N端亲和标签序列在使用TAGZyme外切蛋白酶进行切割方面进行了优化。这些载体具有多克隆位点序列,设计用于允许完全通过外切蛋白水解去除编码的N端亲和标签,而不管用于克隆的限制性酶切位点如何。对于6xHis-白细胞介素-1β(6xHis-interleukin-1beta)和6xHis-肿瘤坏死因子(6xHis-TNF),通过减法Ni-NTA色谱法证明了TAGZyme酶的高效切割反应及去除。在这两种情况下,超过99.8%的TAGZyme蛋白水解活性与回收的、去除标签的蛋白分离。通过埃德曼降解法进行的N端分析揭示了天然蛋白的预测序列,并表明纯度超过99%。对于6xHis标记的绿色荧光蛋白(GFP)和白细胞介素-1β的切割,二氨基肽酶(DAPase)酶对每个氨基酸的平均切割速率为1.5±0.5分钟。

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